WO2019110236A1 - Dispositif d'amenée de substrat et machine de traitement de feuilles - Google Patents
Dispositif d'amenée de substrat et machine de traitement de feuilles Download PDFInfo
- Publication number
- WO2019110236A1 WO2019110236A1 PCT/EP2018/080636 EP2018080636W WO2019110236A1 WO 2019110236 A1 WO2019110236 A1 WO 2019110236A1 EP 2018080636 W EP2018080636 W EP 2018080636W WO 2019110236 A1 WO2019110236 A1 WO 2019110236A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- sheet
- transport
- processing machine
- substrate
- suction
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H3/00—Separating articles from piles
- B65H3/02—Separating articles from piles using friction forces between articles and separator
- B65H3/04—Endless-belt separators
- B65H3/042—Endless-belt separators separating from the bottom of the pile
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H3/00—Separating articles from piles
- B65H3/02—Separating articles from piles using friction forces between articles and separator
- B65H3/04—Endless-belt separators
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H3/00—Separating articles from piles
- B65H3/08—Separating articles from piles using pneumatic force
- B65H3/12—Suction bands, belts, or tables moving relatively to the pile
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H3/00—Separating articles from piles
- B65H3/08—Separating articles from piles using pneumatic force
- B65H3/12—Suction bands, belts, or tables moving relatively to the pile
- B65H3/124—Suction bands or belts
- B65H3/126—Suction bands or belts separating from the bottom of pile
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H5/00—Feeding articles separated from piles; Feeding articles to machines
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H5/00—Feeding articles separated from piles; Feeding articles to machines
- B65H5/02—Feeding articles separated from piles; Feeding articles to machines by belts or chains, e.g. between belts or chains
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H5/00—Feeding articles separated from piles; Feeding articles to machines
- B65H5/08—Feeding articles separated from piles; Feeding articles to machines by grippers, e.g. suction grippers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H2404/00—Parts for transporting or guiding the handled material
- B65H2404/20—Belts
- B65H2404/25—Driving or guiding arrangements
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H2404/00—Parts for transporting or guiding the handled material
- B65H2404/20—Belts
- B65H2404/26—Particular arrangement of belt, or belts
- B65H2404/264—Arrangement of side-by-side belts
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H2404/00—Parts for transporting or guiding the handled material
- B65H2404/20—Belts
- B65H2404/26—Particular arrangement of belt, or belts
- B65H2404/269—Particular arrangement of belt, or belts other arrangements
- B65H2404/2693—Arrangement of belts on movable frame
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H2406/00—Means using fluid
- B65H2406/30—Suction means
- B65H2406/32—Suction belts
Definitions
- the invention relates to a Substratzucht pleasing appearance and a
- Non-impact printing processes are understood to mean printing processes which do not require a fixed, that is physically immutable, printing form. Such printing methods can produce different print images in each printing process. Examples of non-impact printing processes are ionographic processes, magnetographic processes, thermographic processes, electrophotography, laser printing and in particular inkjet printing processes or ink-jet printing processes. Such printing methods usually have at least one image-forming device, for example at least one print head.
- such a printhead is designed, for example, as an inkjet printhead and has at least one and preferably several nozzles, by means of which specifically at least one printing fluid, for example in the form of ink drops, can be transferred to a printing material.
- Alternative printing methods have fixed printing forms, for example
- Gravure printing method planographic printing method, offset printing method and high-pressure method, in particular flexographic printing method.
- flexographic printing method Depending on the number of copies and / or others
- Requirements such as print quality may be a non-impact printing process or a printing process with a solid printing form to be preferred.
- Multi-color printing is referred to as the Passer (DIN 16500-2), when individual print images of different colors are combined exactly to a picture. Also in the context of ink jet printing, appropriate measures must be taken to maintain register and / or register. In particular, it is important that a relative position between the print head and printing material is known and / or kept constant.
- the register is also called color register.
- the term register mark should therefore also be understood below to mean a registration mark, that is to say a mark for checking the passport or color register.
- Sheetfed presses are known. However, conventional transport systems are not always applicable to particularly thick sheets.
- a sheet-fed printing machine which operates on the offset printing principle and has additional inkjet printing units, which have printheads and dryers, which are optionally arranged to be movable. Drives for transporting sheets are not described.
- Inkjet printheads and dryers A transport of substrate and intended drives is described only in connection with a web-fed printing press.
- EP 0 669 208 A1 discloses a sheet-fed printing machine with drive motors for cylinders and the possibility of their axial positioning.
- EP 0 615 941 A1 discloses a sheet-fed printing machine with individually driven acceleration means. From DE 697 21 715 T2 a method and a device is known, wherein mail pieces, in particular postcards, isolated and fed to an ink jet print head. The mail pieces are accelerated from a primary accelerator to a first speed and from a secondary one
- Acceleration means are driven by a common drive.
- a motor controller controls this drive as well as a drive that transports the mailpieces past the printhead module.
- the mailpieces are decelerated as needed by the secondary accelerator to increase a gap to the previous mailpiece.
- the first acceleration means is decelerated because of the common drive.
- US 2001/0022422 A1 and US 2013/0216291 A1 each disclose a method and a copying machine, wherein paper sheets are removed from a stack from above, separated and fed to a printing location.
- US 2002/0180138 A1 discloses a method and a device in which checks are separated and marked.
- a primary accelerator operates slower than a secondary accelerator.
- the checks are decelerated or accelerated as needed by the secondary accelerator to adjust a gap to the previous check.
- the primary accelerator is decelerated or accelerated in the same ratio.
- Acceleration means known which has a lifting frame movable with respect to a vertical direction.
- US Pat. No. 4 557 472 A1 discloses a substrate feed device in which two strips are pivoted as a primary acceleration means against a lowermost sheet and at the same time lift on the one hand and thereby press against stops and thus deform and on the other hand move forward until gripped by a roll nip and continue to be transported.
- a substrate feeding device is known by means of which it is possible to separate from below a stack of cards in the format of telephone cards.
- two rollers are used, which are arranged on a common shaft and by means of a pivoting movement brought together with the bottom of the stack in contact.
- a shaft section carries two semicircular contact bodies which are intended to remove paper sheets from above from a stack.
- the shaft portion is separable as a whole together with the two contact bodies of a shaft portion which is connected to a gear train.
- the invention has for its object to provide a Substratzufufhr issued and a sheet processing machine.
- a processing machine or sheet processing machine is preferred as
- the processing machine is preferably designed as a processing machine for processing corrugated board, in particular corrugated board, that is preferably as a corrugated board processing machine and / or corrugated board processing machine. More preferred is the
- Sheet processing machine as a sheet-fed printing machine for coating
- the processing machine is alternatively or additionally as a punching machine and / or sheet punching machine and / or
- the preferably designed as a sheet-fed press processing machine preferably has at least one and more preferably at least two modules designed as modules.
- the at least one module and more preferably the at least two modules preferably each have at least one own drive.
- at least one of the at least two modules is designed as a processing module, in particular as a coating module.
- the printing machine or sheet-fed printing press preferably additionally has the feature that the at least one coating module is designed as a printing module and / or as a non-impact coating module.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that at least one of the at least two modules is at least one
- Coating module is arranged, as the primer module and / or as
- Paint module is formed.
- the preferably designed as a sheet-fed press machine is preferably characterized in that at least one of the at least two at least one drying device or drying device has and / or is designed as at least one drying module.
- the processing machine which is preferably designed as a sheet-fed printing press, is preferably characterized in that this drying device or drying device or the at least one drying module has at least one as hot air source
- preferably designed as a sheet-fed printing machine processing machine is preferably characterized in that preferably designed as a sheet-fed press processing machine provided for a transport of substrate, especially substrate and / or sheet transport path and further preferred that at least by the Non Impact coating module specified portion of this provided for the transport of substrate, in particular substrate and / or sheet transport path is at least substantially flat and / or extends substantially horizontally.
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that with respect to the transportation of substrate, especially substrate and / or sheet provided transport path for at least one coating device and / or after at least a drying device or drying device at least one inspection device is arranged.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that at least one of the at least two modules is designed as a flexo coating module.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that at least one diagonal register setting device forms part of the respective machine
- Flexo coating module is arranged.
- Flexo coating module is designed as a primer module and / or as a printing module and / or as a paint module.
- the processing machine which is preferably designed as a sheet-fed printing press, is preferably characterized in that, in addition to the non-impact coating module, at least one coating module designed as a primer module is arranged, which has its own
- Drying device or drying device and at least one designed as a coating module coating module is arranged, which has its own drying device or drying device.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that one for the transport of sheets through an area of action of the drying device or
- Drying device of the primer module provided transport means by a drive of the primer module is driven and / or that one for the
- Drying device of the paint module provided by means of transport a drive of the painting module can be driven.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that an area of action of the drying device or drying device of the at least one further of the at least two modules with respect to the transport path provided for the transport of substrate, in particular printing material and / or sheet an application point of this at least one further of the at least two modules is arranged.
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that the at least one non-impact coating module at least two arranged along one for the transport of substrate, in particular substrate and / or sheet transport path arranged one behind the other, with respect to at least one coupling device having identically constructed receiving devices, each of which is designed for selectively receiving a respectively designed as at least one printhead assembly or at least one dryer assembly standard assembly.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized by the fact that the non-impact coating module has its own, in particular integrated
- Drying device or drying device has.
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that provided along the transport path for substrate, especially substrate and / or sheet transport path at least a first intended for colored coating agent application point at least one non-impact coating module and thereafter on
- Coating agent provided job at least one Non Impact Coating module and then a Einwirk Scheme at least one further, the further application point associated drying device is arranged.
- an intermediate drying is possible.
- Such deformations may be, for example, an extension in the plane of the
- Substrate cause Such deformations can, for example, also result from non-uniform expansion of the substrate, causing it to bend and / or become wavy. Thus, for example, a higher print quality is effected, in particular with respect to the passport. This allows alternatively or additionally, that of the other
- Job Heads are not damaged by deformed substrate. Thus, damage and repair-related costs can be reduced or avoided.
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that at least one printhead connected to at least one positioning and / or connectable and more preferably that the at least one positioning device has at least one positioning. Then you can appropriate
- shut off subsequent printheads from the transport path of the substrate should a dangerous deformation of the substrate occur.
- a module is a respective aggregate or a structure of several To understand aggregates, which has at least one own controllable and / or controllable drive and / or at least one transfer means for sheets and / or at least one without deviation or with a deviation of at most 5 cm on a same number of modules for the first standard height starting and / or has ending section of a transport path provided for substrate, in particular substrate and / or sheet transport path and / or as a self-standing functional module and / or each made for themselves and / or each mounted for themselves
- Machine unit or functional assembly is formed.
- the preferably designed as a sheet-fed printing machine preferably characterized by having at least two modules designed as modules and that the at least two modules each have at least its own drive and that at least one of the at least two modules as non-impact Coating module is formed and that at least one of the at least two modules is designed as a drying module.
- Sheet processing machine allow a cost-effective and highly variable design and subsequent expandability of processing machines.
- the preferably designed as a sheet-fed press machine preferably characterized by the fact that it has a transport of substrate, especially substrate and / or sheet provided transport path and that for a plurality, more preferably at least three and even more preferred all of the modules preferred as
- Sheet-fed press machine is designed that a specified by the respective module of each section provided for the transport of substrate, in particular substrate and / or sheet transport path has a minimum radius of curvature which is at least 2 meters and / or in entire region of the respective module has a direction which deviates at most by 30 ° from at least one horizontal direction.
- a specified by the respective module of each section provided for the transport of substrate, in particular substrate and / or sheet transport path has a minimum radius of curvature which is at least 2 meters and / or in entire region of the respective module has a direction which deviates at most by 30 ° from at least one horizontal direction.
- corrugated cardboard sheets with thicknesses of, for example, 10 mm or more can be processed. Furthermore, it is ensured that modules can be easily connected to each other, in particular, in turn, without the bow strong or deform at all.
- the preferably designed as a sheet-fed press machine preferably characterized by the fact that the at least two modules each have at least one own drive, each of which serves to transport a substrate to be processed, in particular
- Electric motor is formed. Under a position-controlled electric motor is in particular also a servo motor to understand and / or is in particular an electric motor to understand, which is adjustable with respect to the angular position of its rotor, even if it is not or not operated permanently in this way. This increases the flexibility in assembling individual modules and the drive power can be optimized regardless of the overall size of the machine.
- the transport effected by the respective drive does not necessarily have to take place through the entire respective module. For example, several drives can act in succession on the substrate for transport through the respective module, in particular temporarily and alone and / or temporarily together.
- the preferred as Sheet-fed press machine designed preferred machine that it has at least three modules and that at least one of the modules as a sheet feeder module and / or as a preparation module and / or as an investment module and / or primer module and / or transport module and / or as
- Paint coating module and / or as aftertreatment module and / or as a shaping module and / or as a punching module and / or as a display module is formed and that for a plurality, more preferably at least three and even more preferably all of the modules of the preferably designed as a sheet-fed press machine, that respective module each having at least one own drive.
- the preferably designed as a sheet-fed press processing machine is preferably characterized in that each module of preferably designed as a sheet-fed press machine each having at least its own drive and / or and that with the exception of an optionally arranged investor module and / or with the exception of
- Sheet-fed printing machine trained machine applies that a specified by the respective module each section of the for the transport of
- processing substrate in particular substrate and / or sheet provided transport path has a minimum radius of curvature which is at least 2 meters and / or in the entire region of the respective module has a direction which deviates at least 30 ° from at least one horizontal direction.
- the preferably designed as a sheet-fed press processing machine is preferably characterized in that drive controls and / or drive controllers or drive controls of the individual modules are individually and independently operable and / or that the individual modules of the machine with respect to their drives matched are operable and / or operated and / or that the individual modules of the Machining machine by means of at least one electronic master axis at least with respect to their drives coordinated operable and / or operated.
- drive controller and drive control are to be synonymous in the preceding and following.
- the preferably designed as a sheet-fed printing machine processing machine is preferably characterized in that the sheet processing machine has at least one unit, the at least one suction conveyor designed as a suction conveyor for transporting sheets in one
- this at least one suction belt at least three spaced transversely with respect to a transverse direction arranged conveyor belts and that at least one displacement means is arranged by means of at least one of the at least three conveyor belts in and / or against
- Transverse direction is adjustable in particular laterally displaceable. More preferably, the at least one unit for aligning sheets with respect to the transverse direction at least one fixed during the operation of the sheet processing machine arranged side stop and / or at least one particular during operation of the sheet processing machine fixedly arranged side mark, even more preferably at least two such side stops and / or at least two such page marks.
- the preferably designed as a sheet-fed printing machine preferably characterized by having at least two modules and at least two modules each have at least one transfer means, which serves to transport a sheet between this respective module on the one hand and at least one other module to support or perform and / or that a specified by the respective module section of the transport of substrate, in particular substrate and / or sheet provided transport path on a respective input height of the respective module begins and / or ends at a respective initial height of the respective module and applies to several modules of the machine that the respective entrance height of each module deviates from a same first standard height by more than 5 cm and / or the respective starting height of the respective module deviates from the same first standard height by at most 5 cm and / or the respective entrance height of the respective module deviates from the respective starting height of the respective module by at most 5 cm.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that at least the non-impact coating module and the drying module each have at least one suction transport means and / or that the non-impact
- Coating module is designed as an inkjet coating module. This enables a particularly precise printing, especially for flexible printed images.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that the non-impact coating module has at least one and preferably exactly one
- Suction belt has trained transport.
- the preferably designed as a sheet-fed printing machine preferably characterized in that the conveyor belt of the at least one suction belt of the coating device, in particular non-impact coating device measured in the transverse direction width of at least 30 cm, preferably at least 50 cm, more preferred at least 100 cm and even more preferably at least 150 cm.
- the preferably designed as a sheet-fed press processing machine is preferably characterized in that the at least one coating module, in particular Non Impact coating module has at least one footing for at least one operator, at least temporarily vertically above the suction belt, in particular above the conveyor belt of the Suction bands arranged and / or can be arranged.
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that at least one clamping means for adjusting and / or maintaining a particular mechanical tension of the conveyor belt of the suction belt is arranged, in particular standing with the conveyor belt in contact.
- the at least one tensioning means is displaceable in and / or against at least one tensioning direction and / or all components of the at least one tensioning means that are in contact with the at least one conveyor belt are arranged to be linearly movable together.
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that at least one after-drying device is arranged, at least one aligned at least partially on the at least one and preferably exactly designed as a suction conveyor transport of the non-impact coating module
- Heat exchanger with at least one air discharge line at least one with respect to the transport direction of the suction belt upstream drying device or
- Drying device is connected.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that the drying device or drying device has at least one as
- Infrared radiation source trained energy delivery device and / or that the drying device or drying device has at least one formed as a UV radiation source energy delivery device and / or that the drying device or drying device at least one as
- the preferably designed as a sheet-fed press processing machine is preferably characterized in that at least one of the at least two modules is designed as Substratzufufhr worn and that at least one, in particular at least two modules as a processing module, in particular pressure module and / or Forming module and / or punching module is formed and that preferably the Substratzufufhrehre at least one primary acceleration means with primary drive or primary acceleration drive the Substratatzucht discovered and at least along the provided for the transport of substrate, in particular substrate and / or sheet transport path to the at least one primary acceleration means arranged secondary accelerator with secondary drive or secondary
- the preferably designed as a sheet-fed press processing machine is preferably characterized in that the at least one primary acceleration means is disposed below a storage area provided for storing a stack of sheets and that the at least one processing module, in particular printing module and / or shaping module and / or punching a different from the primary drive of the Substratatzucht Nur and the secondary drive of the Substratatzucht Nurs drive for a Transport of sheets is assigned.
- the preferably designed as a sheet-fed printing machine preferably characterized by the machine preferably designed as a sheet-fed machine has at least three modules designed as modules and that the at least three modules each have at least one own drive and / or that preferred machine tool designed as a sheet-fed printing machine has a plurality of units designed as pressure modules, which each have at least one own drive.
- the preferably designed as a sheet-fed press machine is preferably characterized in that the at least one primary acceleration means is formed as at least one particular exclusively acting on a respective lowest sheet of a stack and / or a respective bottom of the sheet acceleration means and / or that the at least one printing module as coating agent applying from above
- Printing module is formed and / or the at least one printing module is designed as a non-impact coating unit and / or as an ink jet printing unit. If a plurality of printing modules are arranged, this preferably applies to several and more preferably all of the printing modules. In an alternative or additional
- Processing machine preferably characterized in that the drying device or drying device as from above acting and / or able to act
- Drying device or drying device is formed.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that arc can be accelerated and / or accelerated to a first speed by means of the at least one primary accelerating means and that sheets can be accelerated and / or accelerated by the at least one secondary accelerating means, in particular from the first speed to a second speed which is greater than the first speed Speed and / or that the second speed is for a transport of the sheet provided by the at least one printing unit printing speed.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that the at least one secondary acceleration means is designed as at least one acceleration means acting in particular exclusively on a respective underside of the sheet.
- the preferably designed as a sheet-fed printing machine preferably characterized by having at least two modules designed as modules and that preferably the at least two modules each have at least one own drive and that preferably at least one of the at least two modules sheet feeder module designed as a substrate feeding device and that preferably the substrate feeding device has at least one primary accelerating means with primary drive
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that the primary drive and the secondary drive and the at least one further drive are each designed as a position-controlled electric motor and that a drive control of the primary drive is different from a drive control of the secondary drive and that further preferably a drive control of the at least one further drive of the
- Drive control of the primary drive and the drive control of the secondary drive is different and that preferably the drive control of the primary drive and the drive control of the secondary drive and more preferably also the
- Sheet-fed printing machine designed machine preferably characterized in that at least one sheet sensor of Substratatzuschreib noise for detecting a respective leading edge and / or a respective trailing edge of respective sheet on the
- arranged transport path is arranged aligned.
- a detection range of this overlap at least one sheet sensor and provided for the transport of sheets transport path.
- Under a leading edge is to be understood in particular a leading during the transport of the respective sheet edge.
- Under a trailing edge is to be understood in particular a trailing during the transport of the respective sheet edge.
- the preferably designed as a sheet-fed printing machine processing machine is preferably characterized in that a drive control of the primary drive is different from a drive control of the secondary drive and that a drive control of the drive
- Processing module in particular pressure module and / or shaping module and / or punching module of the drive control of the primary drive and of the
- the drive control of the primary drive and the drive control of the secondary drive and a drive control of the drive of the machining module are each pairwise different and are preferably each connected in circuit technology with a machine control of the sheet processing machine.
- the machine control is directly connected to the respective drive control, as well as those cases in which, for example, one or more
- Regulations and / or controls and / or other instances are arranged interposed.
- the preferably designed as a sheet-fed press processing machine is preferably characterized in that as the at least one primary accelerating means a plurality of subsets of primary acceleration means are arranged, which are at least temporarily operable from subset to subset of different bow speeds and / or each at least one respective primary drive assigned only to this respective subset of acceleration means and / or the at least one primary acceleration means as at least one transport roller and / or at least one conveyor belt and / or at least one suction transport means and / or at least one suction belt and / or as at least one Saugkastenband and / or as at least one Rollensaugsystem and / or as at least one suction pad and / or as at least one suction roller is formed.
- Each subset may have a primary accelerator or a plurality of primary accelerators.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that the at least one secondary acceleration means as at least one outgoing transport of the Substratatzucht streets and / or as at least one
- the preferably designed as a sheet-fed printing machine preferably characterized by the fact that the at least one primary acceleration means is also designed as Bogenausrichtstoff for alignment with the transverse direction and / or a pivotal position and / or that at least one secondary acceleration means at the same time is designed as Bogenausrichtstoff for alignment with respect to the transverse direction and / or a pivotal position.
- the preferably designed as a sheet-fed printing machine processing machine is preferably characterized in that it has at least one designed as a suction suction conveyor and that this at least one suction transport at least one particular flexible
- Transport belt which extends with at least one transport section of its circulation path parallel to a transport direction along a portion of a provided for the transport of substrate, in particular substrate and / or sheet transport path in particular over a transport length.
- the at least one conveyor belt has a plurality of suction openings. At least two, more preferably at least three, even more preferably at least five, and even more preferably at least ten, are preferred along the transport path provided for the transport of substrate, in particular printing material and / or sheet with respect to the transport direction separate and / or separable vacuum chambers are arranged one behind the other, each having at least one
- the at least one conveyor belt at least partially covers in its transport section of its circulation path at least one mammalian opening of several and / or all of these vacuum chambers arranged one behind the other.
- the at least one conveyor belt at least partially covers in its transport section of its circulation path at least one mammalian opening of several and / or all of these vacuum chambers arranged one behind the other.
- the preferably designed as a sheet-fed printing machine preferably characterized by having at least one conveyor belt, preferably with at least one transport section of its circulation path parallel to a transport direction along a portion of a transport of substrate, in particular substrate and / or bow provided transport path extends. It is preferred along the
- Transport section of the at least one conveyor belt at least one
- Coating point of at least one coating unit preferably as
- At least one strip alignment means of the at least one conveyor belt is arranged in contact with the at least one conveyor belt.
- a position of the at least one band alignment means relative to at least one in particular stationary frame of the preferably designed as a sheet-fed press processing machine a position of the at least one conveyor belt with respect to a horizontal, orthogonal to the Transport direction oriented transverse direction influenced.
- the preferably designed as a sheet-fed press processing machine is preferably characterized in that the at least one Bandausrichtstoff at least one example, as an electric motor and / or as
- the preferably designed as a sheet-fed press machine is preferably characterized in that the at least one Bandausrichtstoff is designed as at least one Bandausrichtwalze whose rotational axis is variable in orientation and / or that the at least one Bandausrichtstoff has at least one radial bearing, whose
- Rotation axis is displaceable at least with respect to a compensation direction at least relative to at least one particular stationary frame of preferably designed as a sheet-fed press processing machine and / or that the at least one Bandausrichtstoff arranged at least two spaced in the transverse direction
- Radial bearing having its axes of rotation at least with respect to a compensation direction at least relative to each other and / or independently and / or relative to at least one particular stationary frame of the preferably designed as a sheet-fed press processing machine are arranged displaceable.
- the at least one radial bearing is linearly displaceable at least in and / or counter to the compensation direction and / or the at least two radial bearings are linearly displaceable at least in and / or counter to the compensation direction.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that the processing machine, which is preferably designed as a sheet-fed printing press, at least a coating unit designed as a non-impact coating unit and that preferably designed as a sheet-fed printing machine
- Processing machine has at least one conveyor belt which extends with at least one transport section of its circulation path parallel to a transport direction along a portion of a provided for the transport of substrate, in particular substrate and / or sheet transport path. At least one is preferably along the transport section of the at least one conveyor belt
- Coating point of at least one coating unit preferably as
- Arranged sheet-fed machine processing machine more preferably several coating sites. This preferably has at least one
- Coating unit at least one print head, and wherein the at least one print head is further preferably connected to at least a first frame of the at least one coating unit.
- the at least one conveyor belt is arranged connected to at least one second frame via at least one deflecting means and at least one radial bearing. More preferably, the at least one first frame is apart from at least one in particular below the at least one coating unit and / or below the preferred as
- Sheet-fed machine designed processing machine arranged mounting surface arranged at most over particularly mechanically flexible connections connected to the second frame.
- Such in particular mechanically flexible connections are, for example, supply lines for power and / or data and / or gas and / or gas mixtures and / or liquids.
- the at least one print head can be decoupled particularly effectively from any vibrations which could be caused by the at least one conveyor belt and / or its deflection means and / or its drive.
- the processing machine which is preferably designed as a sheet-fed printing machine, is preferably characterized in that along a path for the transport of substrate, in particular printing material and / or sheet provided transport path is arranged at least one projection sensor for detecting at least a spatial extent of arc and / or that at least one compression device is arranged, which has at least a first compression body and at least a second compression body and at least one force element and / or that the at least one first
- Compression body by means of at least one force element of a
- Passing on the at least one second compression body is arranged to move to a compression position and / or that is arranged in the passage layer first compression element, the at least one force element is biased and / or that the at least one compression device has at least one retaining device, at least between a retaining state and a release state is switchable and which is arranged in the retaining state prevents movement of the at least one first compression body from its passage layer into its compression position.
- Transport section of its circulation path parallel to a transport direction along a portion of a provided for the transport of substrate, in particular substrate and / or sheet transport path in particular over a transport length moves and preferably along the provided for the transport of substrate, in particular substrate and / or sheet transport path at least two, more preferably at least three, even more preferably at least five and even more preferably at least ten, in particular with respect to the transport direction separated and / or separable vacuum chambers are arranged one behind the other, each having at least one mammalian opening. It covers at least one
- Conveyor belt in its transport section of its circulation path preferred respectively at least one mammal opening of several and / or all of these successively arranged vacuum chambers at least partially. This is a respective
- the method is preferably characterized in that sheets originating from a stack are separated.
- the method is preferably characterized in that the sheets are in each case directed to a first by means of at least one primary accelerating means of a substrate supply device driven by a primary drive
- the at least one primary drive is designed as a position-controlled electric motor.
- the at least one primary acceleration agent itself is preferably positively accelerated in order to accelerate the respective arc positively, in particular while contact exists between the respective arc on the one hand and the primary acceleration means on the other hand.
- the method is preferably characterized in that the sheets are each accelerated to a second speed by means of at least one secondary acceleration means driven by a secondary drive means, wherein further preferably formed at least one secondary drive as a position-controlled electric motor is and / or the second speed is greater than the first
- Accelerator itself positively accelerates to the respective arc positively accelerate, in particular, while there is contact between the respective arc on the one hand and the primary accelerator on the other hand.
- the method is preferably characterized in that sheets originating from a stack are separated by means of at least one primary accelerating means of a substrate feeding device, in particular from below, and individually in a transport direction, in particular one
- the at least partially separated sheets are each in particular of the at least one first acceleration means to at least one in particular with respect to the transport direction behind the at least one front stop
- the sheets are preferably transported in particular along a transport path provided for the transport path from the Substrataufuvig Nurs to at least one other module of the sheet processing machine and further preferably in each case thereafter by means of at least one drive of the at least one further module with a
- a front stack boundary plane preferably has a surface normal, which is oriented horizontally and / or parallel to the transport direction.
- the front stack boundary plane is preferably oriented by a plurality of in the transport direction and / or the second
- leading edge is to be understood as meaning in particular a leading edge during transport and / or a front boundary, even if this edge can be at least partially pronounced as a surface.
- Aufholen für is preferably a
- each transport speed of the sheets which is greater than the processing speed, as a catch-up speed designated.
- the method is preferably characterized in that the sheets are arranged to cut the front stack boundary plane during their respective transport, at least at one point in time, and at the same time are transported at a catch-up speed.
- the method is preferably characterized in that the sheets are then each accelerated by means of this at least one secondary accelerating means to a third speed which is greater than the second speed and that the sheets in each case thereafter at least in particular by means of this a secondary accelerator be braked back to the second speed.
- the method is preferably characterized in that the sheets along the transport path of the
- Sheet processing machine in particular at least one processing module, in particular printing module and / or shaping module and / or punching module, are transported and wherein the sheets are each thereafter by means of at least one
- the at least one further module Drive the at least one further module, in particular the at least one processing module and / or printing module and / or shaping module and / or punching module with a processing speed, in particular printing speed and / or forming speed and / or punching speed by the respective further module, in particular processing module and / or printing module and / or shaping module and / or punching module transported and thereby processed in this particular further module, in particular processing module and / or printing module and / or forming module and / or punching module, in particular printed and / or molded and / or punched.
- the first speed is preferably smaller than the processing speed, in particular printing speed and / or Shaping speed and / or punching speed.
- Processing speed in particular the printing speed and / or
- Shaping speed and / or punching speed is preferably equal to the second speed.
- Punching speed always refer to the transport speed of the substrate, in particular the sheet, and / or on the surface speed or peripheral speed of the respective component or accelerator.
- the method is preferably characterized in that the printing speed is equal to the second
- Speed is and / or that the second speed is greater than the first speed and / or the first speed is at least 10%, more preferably at least 20% and even more preferably at least 30% smaller than the processing speed, in particular printing speed and or that the first speed is at least 20%, more preferably at least 30% and even more preferably at least 40% of the second speed and / or that the first speed is at most 80% and more preferably at most 70% and even more preferably at most 60% of second speed is and / or that the third speed is at least 10% and more preferably at least 20%, and even more preferably at least 30% and even more preferably at least 50% greater than the second speed.
- the method is preferably characterized in that the sheets in the at least one printing module are printed from above and / or printed by means of at least one non-impact printing method and / or by means of an ink-jet printing method.
- the method is preferably characterized in that the sheets in the at least one printing module are printed from below and / or printed by means of at least one flexographic printing process and / or by means of a rotary printing process.
- the method is preferably characterized in that the sheets are punched in the at least one punching module by means of a punching cylinder acting on the sheet from above.
- the at least one printing module is formed as a coating agent from the top applying pressure module and / or the at least one printing module as Non Impact coating module and / or formed as an ink jet printing module and / or the at least one printing module is formed as a coating agent from below applying pressure module and / or the at least one printing module is designed as a flexo coating module.
- this is at least one
- Machining module designed as a forming module and / or punching module having from above on the sheet punching cylinder.
- the method is preferably characterized in that at least one sheet sensor detects a trailing edge of a preceding sheet and generates a trailing edge signal and that at least one sheet sensor detects and traps a leading edge of a trailing sheet
- the method is preferably characterized in that the at least one primary drive and the at least one secondary drive are operated in particular coordinated with one another taking into account the background signal and / or the leading edge signal such that a gap between a preceding arc and a trailing arc is reduced and / or set to a value within a predetermined tolerance around a target value.
- the method is preferably characterized in that a primary acceleration profile for the at least one primary acceleration means and / or its primary drive is stored and / or that a secondary acceleration profile for the at least one secondary
- Acceleration means and / or its secondary drive is deposited and / or that in response to signals of the at least one sheet sensor, the primary
- Acceleration profile and / or preferably the secondary acceleration profile is modified.
- the method is preferably characterized in that the sheets are in each case at least one time with both the primary accelerator and the secondary
- Acceleration means are in contact and more preferably at least this time, the primary accelerator and the secondary accelerator have a same speed, in particular the first speed.
- the method is characterized Preferably characterized in that a braking of the at least one primary
- Acceleration means in each case causes no braking of the respective immediately previously accelerated with this primary accelerating means bow and / or that braking the at least one secondary accelerating means does not cause any slowing down of the respective immediately previously accelerated with this secondary accelerating means bow. This is due, for example, to the fact that the respective acceleration means only slows down when the sheet has already come out of contact therewith.
- the method is preferably characterized in that the sheets in the at least one printing module are printed from above and / or that the sheets in the at least one printing module by means of a non-impact printing method and / or by means of an inkjet printing process from above be printed.
- the method is preferably characterized in that the at least one primary acceleration means is brought into contact with the sheets on a respective underside of the sheet, in particular exclusively the respective underside.
- the method is preferably characterized in that the at least one secondary acceleration means has at least one transport gap in which the sheets are at least partially arranged, while the at least one secondary acceleration means accelerates them to the second speed.
- the method is preferably characterized in that the at least one secondary acceleration means is brought into contact with the sheets on a respective underside of the sheet, in particular exclusively the respective underside.
- the method is characterized Preferably, characterized in that during acceleration by means of the at least one primary accelerating means, a displacement of the respective arc with respect to a transverse direction and / or a pivoting movement of the respective arc about an orthogonal to the transverse direction pivot axis and / or an adjustment of a phase angle of the respective arc to at least a subsequent, the sheet-transporting component of preferably designed as a sheet-fed press
- Processing machine takes place and / or that during acceleration by means of the at least one secondary accelerating means a displacement of the respective arc with respect to the transverse direction and / or a pivoting movement of the respective arc about an orthogonal to the transverse direction pivot axis and / or adjustment of a phase angle of the respective arc at least one
- the sheet-transporting component of preferably as
- Sheet-fed machine trained processing machine is done.
- the method is preferably characterized in that the substrate feeding device is designed as a module of the preferably designed as a sheet-fed printing machine processing machine.
- Fig. 1 is a schematic representation of a sheet feeder unit
- Fig. 2a is a first portion of a schematic representation of an exemplary
- FIG. 2b shows a second section of the schematic illustration of the exemplary processing machines according to FIG. 2a;
- Fig. 2c is a third section of the schematic representation of the exemplary
- Fig. 3 is a schematic representation of a conditioning aggregate
- Fig. 4 is a schematic representation of a plant unit
- Fig. 5a is a schematic representation of a Flexobe Anlagenngsaggregat
- Fig. 5b is a schematic representation of a Flexobe Anlagenngsaggregat
- Fig. 5c is a schematic representation of a Flexobe Anlagenngsaggregat
- Fig. 5d is a schematic representation of a Flexobe Anlagenngsaggregat
- FIG. 6 shows a schematic representation of a non-impact coating unit, coated from above coating unit
- Fig. 7 is a schematic representation of a drying unit
- Fig. 8a is a schematic representation of a trained as a suction belt
- Fig. 8b is a schematic representation of a trained as Rollenensaugsystem
- FIG. 8c a schematic representation of a longitudinal section of a suction transporting means designed as a suction box belt
- FIG. 8d a schematic representation of a cross section of a suction transporting means designed as a suction box belt
- Fig. 9 is a schematic representation of a transport unit
- FIG. 10 is a schematic representation of a shaping unit
- Fig. 1 1 is a schematic representation of a delivery unit
- Fig. 12a is a schematic representation of an exemplary processing machines with four pressure points
- FIG. 12b shows a schematic illustration of an exemplary processing machine with four pressure points, primer module and painting module
- FIG. 12c is a schematic representation of an example of an eight-point printing machine, primer module, and painting module;
- Fig. 13 is a schematic representation of primary and secondary
- Fig. 14a is a schematic representation of primary and secondary
- Acceleration means wherein a plurality of primary drives are arranged;
- Fig. 14b is a schematic representation of primary and secondary
- Acceleration means wherein a plurality of different spacers are arranged
- Fig. 15 is a schematic representation of primary and secondary
- Acceleration means wherein an auxiliary device for detecting erroneously transported and / or faulty sheet arranged for sorting out sheets and / or for holding and / or pushing back of sheet;
- Fig. 16a is a schematic representation of primary and secondary
- Acceleration means wherein as a secondary acceleration means a transport gap forming a pair of conveyor belts is arranged;
- Fig. 16b is a schematic representation of primary and secondary
- Acceleration means being arranged as a primary acceleration means at least one conveyor belt and / or at least one designed as a suction conveyor transport;
- Fig. 16c is a schematic representation of primary and secondary
- Acceleration means which are each formed as at least one conveyor belt and / or at least one designed as a suction conveyor transport;
- 17a is a schematic representation of a trained as a module Non Impact
- Fig. 17b is a schematic representation of a trained as a module Non Impact
- Coating unit four receptacles, two of which are populated by printhead assemblies and one occupied by a dryer assembly and one unoccupied;
- Fig. 17c is a schematic representation of a trained as a module Non Impact
- Coating unit four receptacles, two of which are occupied by printhead assemblies and two are occupied by a dryer assembly;
- Fig. 17d is a schematic representation of a trained as a module Non Impact
- Coating unit four receiving devices two of which are occupied by printhead assemblies and two are unoccupied;
- 18a is a schematic representation of an exemplary processing machine with a print module with dryer assembly between printhead assemblies;
- 18b is a schematic representation of an exemplary processing machine with two printing modules, wherein in the first printing module printhead assemblies and a dryer assembly are arranged and in the second printing module only printhead assemblies are arranged;
- 18 c is a schematic representation of an exemplary processing machine with a printing module, the dryer assembly between
- Fig. 18d is a schematic representation of an exemplary processing machine with a transport means, on the Druckköpre and
- Drying devices are arranged aligned
- Fig. 19a is a schematic representation of a trained as a suction belt
- Fig. 19b is a schematic representation of a trained as a suction belt
- Saugtransortschs with several in the transport direction successively arranged vacuum chambers and a plurality of vacuum sources;
- Fig. 19c is a schematic representation of a trained as a suction belt
- Saugtransortstoffs with several in the transport direction successively arranged vacuum chambers, several vacuum sources and valves;
- Figure 20 is a schematic representation of a conveyor belt with Bandausrichtstoff and clamping means.
- Fig. 21 a is a schematic representation of a transport means with conveyor belt
- a compression device wherein a compression body is arranged in a passage layer
- FIG. 21 b is a schematic representation of FIG. 21 a, wherein a
- Compression body is arranged in a compression layer
- Fig. 22a is a schematic representation of a first and a second frame of a
- FIG. 22b is a schematic representation of a first and a second frame of a coating unit with print heads and positioning device seen in the transport direction;
- Fig. 22c is a schematic representation of a first and a second frame of a
- Fig. 23 is a schematic representation of a sheet feeder unit in the transverse direction
- FIG. 24 is a schematic perspective view of a sheet feeder unit according to FIG. 23; FIG.
- Fig. 25a is a schematic perspective view of a sheet feeder unit according to FIG 23 from above.
- Fig. 25b is a schematic perspective view of a sheet feeder unit according to FIG 25a from above with respect to the transverse direction displaced conveyor belts ..;
- 26a is a schematic representation of a first exemplary course of a
- Fig. 26b is a schematic representation of a second exemplary course of a
- Fig. 26c is a schematic representation of a third exemplary course of a
- Fig. 27 is a schematic perspective view of at least one primary
- Fig. 28 is a schematic perspective view of a multiple primary
- 29a shows a schematic representation of a lifting frame carrying a primary acceleration means with a height adjustment means in a first exemplary position and a vertical drive in a first rotational position;
- FIG. 29b shows a schematic view according to FIG. 29a with the vertical drive in a second rotational position
- FIG. 29c shows a schematic view according to FIG. 29a with the vertical drive in a third rotational position
- FIG. 29d shows a schematic representation according to FIG. 29a with the vertical drive in a fourth rotational position
- FIG. 30a is a schematic illustration according to FIG. 29a with a height adjustment means in a second exemplary position and a vertical drive in a first rotational position;
- FIG. 30b shows a schematic view according to FIG. 30a with the vertical drive in a second rotational position;
- FIG. 30c shows a schematic view according to FIG. 30a with the vertical drive in a third rotational position
- Fig. 30d is a schematic representation of FIG. 30a with the vertical drive in a fourth rotational position.
- inks and inks but also primers, paints and pasty materials are summarized. Preference is given to pressure-fluid materials passing through a processing machine 01, in particular printing machine 01, or at least one
- Coating unit 400; 600; 800 of the processing machine 01, in particular at least one printing unit 600 of the printing press 01, on a substrate 02, in particular a substrate 02, are transmitted and / or transferable, preferably in finely structured form and / or not only a large area preferably a visible and / or due to sensory perceptible and / or machine detectable texture on the substrate 02, in particular substrate 02, justify.
- Inks and printing inks are preferably solutions or dispersions of at least one colorant in at least one solvent. Suitable solvents include, for example, water and / or organic solvents.
- the pressure fluid may be formed as under UV light crosslinking pressure fluid.
- Inks are relatively low viscosity printing fluids and inks are relatively high viscosity printing fluids. Inks preferably have no binder or relatively little binder, while printing inks preferably contain a relatively large amount of binder and more preferably further auxiliaries. Colorants may be pigments and / or dyes, pigments being insoluble in the application medium, while dyes are used in the art
- Printing ink in the sense of a liquid or at least free-flowing dyeing fluid to be printed in the printing press should be understood in the preceding and following - which does not only refer to the colloquial rather with the expression "Ink” in connection brought higher viscous coloring fluid for use in rotary printing machines, but in addition to these higher viscous coloring in the
- Especially low viscosity dyeing fluids such as "inks”, especially inkjet inks, but also powdered dyeing fluids such.
- As toner includes.
- especially colorless paints are meant when talking of printing fluids and / or inks and / or printing inks.
- means for a pretreatment (so-called priming or precoating) of the printing material 02 are preferably meant, if mention is made of printing fluids and / or inks and / or printing inks.
- Pressure fluid is the term of the coating agent synonymous to understand.
- a processing machine 01 is preferably designed as a printing press 01.
- the processing machine 01 is preferably designed as a sheet processing machine 01, that is, as a processing machine 01 for processing sheet-shaped substrate 02 or sheet 02, in particular sheet-shaped printing material 02. Die
- Processing machine 01 is further preferably designed as a corrugated board processing machine 01, ie as a processing machine 01 for processing
- the processing machine 01 is designed as a sheet-fed printing press 01, in particular as a corrugated cardboard printing machine 01, that is to say as a printing press 01 for coating and / or printing on
- the printing press 01 is a printing press 01 operating according to a non-impact printing method and / or a post-press a printing machine 01 working pressure-bound printing method.
- the printing machine 01 as a non-impact printing machine 01, in particular ink jet printing machine 01 and / or formed as a flexographic printing machine 01.
- the printing machine has, for example, at least one flexo coating unit 400;
- the coating machine 01 preferably has at least one non-impact coating unit 400; 600; 800, in particular
- Jet coating unit 400; 600; 800 or ink jet coating unit 400; 600; 800 on As far as in the foregoing and below characteristics are described with reference to a design as a sheet processing machine 01, these also apply to a general processing machine 01, in particular for a
- Processing machine 01 which is designed for processing at least web-like substrate 02, so a web processing machine, at least insofar as there are no contradictions.
- sheet 02 the corresponding applies also to general substrate, in particular sheet or sheet-like substrate, at least insofar as there are no contradictions.
- a transport path for a transport of substrate 02, in particular printing material 02 and / or sheet 02 is provided.
- the transport path provided for the transport of printing substrate 02 is in particular that spatial region which the printing substrate 02 would occupy and / or occupy, if necessary, at least temporarily in the event of its presence.
- Substrates 02 in particular a printing material 02, especially of the sheet 02
- each substrate 02 which is present in two sections and in sections, that is to say also tabular or plate-shaped substrates 02, ie also sheets or plates, may be comprised.
- the arcuate substrate 02 or the sheet 02 defined in this way is formed, for example, from paper or cardboard, ie as a paper or cardboard sheet, or through sheets 02, sheets or optionally sheets of plastic, cardboard, glass or metal.
- the substrate 02 is corrugated board 02, in particular Corrugated cardboard sheet 02.
- a thickness of a sheet 02 is preferably understood to mean a dimension orthogonal to a largest surface of the sheet 02. This largest area is also called the main area.
- the thickness of the sheet 02 is, for example, at least 0.1 mm, more preferably at least 0.3 mm, and even more preferably at least 0.5 mm. Especially with corrugated board sheet 02 also significantly larger thicknesses are common, for example at least 4 mm or even 10 mm and more. Corrugated sheets 02 are comparatively stable and therefore not very flexible. Corresponding adjustments of the processing machine 01 therefore facilitate the processing of sheets 02 of great thickness.
- the processing machine 01 preferably has a plurality of units 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 on. Under an aggregate 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 is preferably to be understood in each case as a group of devices which functionally cooperate, in particular in order to be able to carry out a preferably self-contained machining operation of sheet 02.
- 500; 550; 600; 700; 800; 900; 1000 is in particular a respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or an assembly of several aggregates 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, which preferably at least one transport means 1 11; 1 17; 1 19; 136; 21 1; 31 1; 41 1; 417; 51 1;
- M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000 of an aggregate or module is in particular a drive M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; To understand M1000, which serves
- Drive controller or drive controls of the individual units 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 are preferably individually and independently operable. Further preferred are the drive controllers and / or drive controllers or
- Processing machine 01 is made and / or can be.
- the coordinated control and / or regulation of the drives M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000 of several or all aggregates 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 and / or in particular modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the processing machine 01 is preferably feasible and / or monitorable by means of a machine control of the processing machine 01 and / or is preferably performed and / or monitored by a machine control of the processing machine 01.
- the coordinated control and / or regulation of the drives M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000 of several or all aggregates 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 and / or in particular modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the processing machine 01 is preferably feasible and / or monitorable using at least one BUS system and / or is preferably carried out and / or monitored using at least one BUS system, thus preferably using at least one BUS system.
- the individual units 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 and / or in particular modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the processing machine 01 are therefore at least with respect to their drives M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000 preferably operated in an electronically coordinated manner and / or operated, in particular by means of at least one electronic master axis.
- an electronic master axis is preferably specified, for example by a superordinate one
- the processing machine is preferably characterized in that at least the drive control of the primary drive M101 and the drive control of the secondary drive M101 and the drive control of the drive M600; M900 of the machining module 600; 900 can be operated and / or operated in a coordinated manner and / or can be operated and / or operated in a coordinated manner by means of at least one electronic master axis.
- the higher-level machine control uses components of a specific controller and / or a specific controller of a specific unit 100 for generating the electronic master axis; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 back.
- 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 are used, the remaining Aggregates 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 and / or modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 follow the operation of the processing machine 01 and / or are able to follow.
- Processing machine 01 at least with respect to their drives M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000, for example, mechanically synchronized with each other and / or synchronized.
- Processing machine 01 at least with respect to their drives M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000 mechanically decoupled from each other.
- the respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 has this respective aggregate 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 preferably at least one transfer means 03, which preferably serves to transport a substrate to be processed 02, in particular substrate 02 and / or the sheet 02 between this respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 on the one hand and at least one other unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 and / or at least one other module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000
- a transfer means 03 is preferably a means to understand that supports and / or performs a handover. These include those funds that accept bow 02 and / or pass on.
- the at least one transfer means 03 is designed as a front transfer means 03 and / or a processing area of the respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 with respect to a transport direction T and / or based on the for the
- the at least one transfer means is designed as a rear transfer means and / or the
- the at least one transfer means 03 is designed, for example, as a passive transfer means 03, for example as at least one support surface 03 and / or at least one support roller.
- the at least one transfer means 03 is an active, in particular controlled and / or regulated, transfer means 03
- the units are 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the processing machine 01 is preferably in each case characterized in that the by the respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 specified portion of the transport of substrate 02, in particular substrate 02 and / or sheet 02 provided transport path is at least substantially flat and more preferably completely flat.
- a substantially flat section of the transport path provided for the transport of substrate 02, in particular substrate 02 and / or sheet 02 is to be understood as meaning a section which has a minimum Radius of curvature that is at least 2 meters, more preferably at least 5 meters, and even more preferably at least 10 meters and even more preferably at least 50 meters.
- a completely flat section has an infinitely large radius of curvature and is therefore also substantially flat and thus also has a minimum radius of curvature which is at least 2 meters.
- the units are 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the processing machine 01 is preferably in each case characterized in that the by the respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 specified portion of the transport of substrate 02, in particular substrate 02 and / or sheet 02
- transport path at least substantially horizontally and more preferably exclusively horizontally. This transport path preferably extends in the transport direction T. A substantially horizontally extending for the transport of substrate 02, in particular substrate 02 and / or sheet 02 provided
- Transport path means in particular that the intended transport path in the entire area of the respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 has one or more and / or exclusively directions which deviates at most by 30 °, preferably at most by 15 ° and more preferably by at most 5 ° from at least one horizontal direction.
- the direction of the transport path is in particular that direction in which the sheets 02 are transported at the point at which the direction is measured.
- the transport path provided for the transport of substrate 02, in particular printing material 02 and / or sheet 02 preferably starts at a point of removal of the sheet 02 from a feeder stack 104.
- the units are 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the processing machine 01 preferably in each case characterized in that by the respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 specified section of a transport path for substrate 02, in particular substrate 02 and / or sheet 02 provided on a respective input height of the respective transport path
- Aggregate 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 begins and / or at a respective initial height of the respective unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 ends.
- the input height and / or the initial height is preferably from a lower support surface of the respective unit 100 provided as a standing surface; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, in particular in the vertical direction V.
- Preference is given to several and more preferably all units 100; 200; 300; 400; 500; 550; 600; 700;
- the processing machine 01 is characterized alternatively or additionally by having at least one coating unit 400; 600; 800 and / or non-impact coating unit 400; 600; 800 and / or printing unit 600 formed unit 400; 600; 800 and / or that it has the transport path for substrate 02, in particular printing material 02 and / or sheet 02, and that at least for the at least one coating unit 400; 600;
- 800 and / or non-impact coating unit 400; 600; 800 and / or printing unit 600 is valid, that a designated by this respective section of the transport of substrate 02, in particular substrate 02 and / or sheet 02 provided
- Transport path has a minimum radius of curvature, which is at least 2 meters and / or in the entire area of this coating unit 400; 600; 800 and / or non-impact coating unit 400; 600; 800 and / or printing unit 600 has a direction which deviates at most by 30 ° from at least one horizontal direction.
- the processing machine 01 is characterized alternatively or additionally by the fact that it has a transport path provided for the transport of substrate, in particular substrate 02 and / or sheet 02 and that for a plurality of the modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the sheet-fed printing machine 01, that a through the respective module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 specified respective section of the transport path provided for the transport of substrate 02, in particular substrate 02 and / or sheet 02 has a minimum radius of curvature which is at least 2 meters and / or in the entire area of the respective module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 has a direction which deviates at most by 30 ° from at least one horizontal direction.
- the processing machine 01 preferably has at least one
- the processing machine 01 preferably has at least one
- Conditioning device 200; 550 formed aggregate 200; 550, in particular conditioning unit 200; 550, which is further preferred as module 200; 550, in particular as a conditioning module 200; 550 is formed.
- Conditioning device 200; 550 is designed, for example, as a preparation device 200 or as an after-treatment device 550.
- the processing machine 01 preferably has at least one unit 200 designed as a preparation device 200, in particular a preparation unit 200, which is further preferably designed as a module 200, in particular as a preparation module 200, and a
- the processing machine 01 preferably has at least one aggregate 550, in particular aftertreatment unit 550, which is designed as a post-treatment device 550, which is further preferably designed as a module 550, in particular as a post-treatment module 550, and a
- Conditioning device 550 represents.
- the processing machine 01 preferably has at least one unit 300 embodied as an abutment device 300, in particular an abutment unit 300, which is further preferably designed as a module 300, in particular as an abutment module 300.
- the at least one contact device 300 is alternatively formed as part of the substrate supply device 100.
- the processing machine 01 preferably has at least one
- the at least one coating unit 400; 600; 800 is depending on the function and / or Coating process arranged and / or constructed. That at least one
- Coating unit 400; 600; 800 is preferably used to apply at least one respective coating agent over the whole area and / or part of its area to the substrate 02 to be processed, in particular the printing stock 02 and / or the sheets 02.
- An example of a coating unit 400; 600; 800 is a primer 400 that
- Substrate 02 in particular the substrate 02 and / or the sheet 02 is used.
- a coating unit 400; 600; 800 is a printing unit 600, which serves in particular a jobs of ink and / or ink on sheet 02.
- a coating unit 400; 600; 800 is a
- Paint unit 800 in particular a jobs of paint on the substrate to be processed 02, in particular the substrate 02 and / or the sheet 02 is used.
- coating units 400; 600; 800 preferred in terms of their
- An example of a coating unit 400; 600; 800 is a shape-based coating aggregate 400; 600; 800, which in particular has at least one fixed and preferably replaceable printing form. Mold-based coating units 400; 600; 800 work preferably after one
- Planographic printing process in particular offset lithographic printing process and / or after a gravure printing process and / or after a high-pressure process, particularly preferably according to a flexographic printing process.
- the coating unit 400; 600; 800 is then correspondingly, for example, a flexo coating unit 400; 600; 800,
- a coating unit 400; 600; 800 is a pressure-formless coating unit 400; 600; 800 or non-impact coating unit 400; 600; 800, which works in particular without a fixed printing plate.
- 800 work an ionographic method and / or a magnetographic method and / or a thermographic method and / or electrophotography and / or laser printing and / or in particular preferably an inkjet printing method or inkjet printing method.
- the coating unit 400; 600; 800 is then correspondingly, for example, an ink jet coating unit 400; 600; 800, in particular ink-jet coating module 400; 600; 800th
- the processing machine 01 preferably has at least one unit 400, in particular a primer unit 400, which is also designed as a primer device 400 and is also called a primer unit 400, which is further preferably designed as a module 400, in particular as a primer module 400.
- the at least one primer module 400 is in particular a special form of a processing module 600.
- the processing machine 01 preferably has at least one unit 500 designed as a drying device 500, in particular a drying unit 500, which is further preferably designed as a module 500, in particular as a drying module 500.
- At least one drying device 506 is part of at least one preferred module 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 trained aggregate 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000.
- the at least one drying module 500 is in particular a special form of a processing module 500.
- the processing machine 01 preferably has at least one unit 600 designed as a printing unit 600, which is further preferably designed as a module 600, in particular as a printing module 600.
- the at least one pressure module 600 is in particular a special form of a processing module 600.
- the processing machine 01 preferably has at least one unit 700 which is designed as a transport device 700 or transport means 700, in particular Transporting unit 700, which is further preferably designed as a module 700, in particular as a transport module 700.
- Transporting unit 700 which is further preferably designed as a module 700, in particular as a transport module 700.
- the processing machine 01 points
- Transport devices 700 for example, or alternatively as components of other units 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 and / or modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 on.
- the processing machine 01 preferably has at least one unit 800 designed as a coating device 800, also called a coating unit 800, in particular
- Paint unit 800 which is further preferably designed as a module 800, in particular as a painting module 800.
- the at least one primer module 800 is in particular a special form of a processing module 800.
- the processing machine 01 preferably has at least one unit 900 designed as a shaping device 900 and / or punching device 900, in particular
- Shaping unit 900 and / or punching unit 900 which is further preferably designed as a module 900, in particular as a shaping module 900 and / or punching module 900.
- the at least one shaping module 900 and / or punching module 900 is in particular a special form of a processing module 900.
- the processing machine 01 preferably has at least one
- the processing machine 01 has, for example, at least one
- the transport direction T provided in particular for a transport of sheets 02 is a direction T, which is preferably at least substantially and more preferably oriented completely horizontally and / or which is preferably from a first aggregate 100; 200; 300; 400; 500; 550; 600; 700; 800; 900 of the processing machine 01 to a last unit 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the
- Processing machine 01 has, in particular from a sheet feeder unit 100 or a Substratzufufhr responded 100 on the one hand to a delivery unit 1000 or a Substratabgabe listening 1000 on the other hand, and / or preferably in a direction points, in which the sheet 02 apart from vertical movements or vertical components of movements is transported, in particular by a first contact with a sub-assembly 200 downstream subunit 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the processing machine 01 or first contact with the processing machine 01 up to a last contact with the processing machine 01.
- the investment device 300 is a separate aggregate 300 or module 300 or part of the
- Substrate feed device 100 the transport direction T is preferably the one
- Investment device 300 is oriented to the substrate delivery device 1000.
- Coating unit 400; 600; 800 is preferably a dimension which is preferably orthogonal to the intended transport path of the sheets 02 through the at least one coating unit 400; 600; 800 extends, more preferably in a transverse direction A.
- the transverse direction A is preferably a horizontal direction A. Die
- Transverse direction A is orthogonal to the intended transport direction T, the sheet 02 and / or orthogonal to the intended transport path of the sheet 02 by the at least one coating unit 400; 600; 800 oriented.
- the working width of the processing machine 01 preferably corresponds to a maximum width, which may have a bow 02, in order to be able to be processed with the processing machine 01, So in particular a maximum processable with the printing press 01
- the working width of the processing machine 01 preferably corresponds to the working width of the at least one coating unit 400; 600; 800, in particular printing unit 600.
- the transverse direction A is preferably parallel to an axis of rotation of at least part of a transport means 411; 417; 611; 617; 811; 817 a coating unit 400; 600; 800 oriented.
- the working width of the sheet processing machine 01 is preferably at least 100 cm, more preferably at least 150 cm, even more preferably at least 160 cm, even more preferably at least 200 cm and even more preferably at least 250 cm.
- the processing machine 01 preferably has one or more locations
- Such suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 are preferably used to move substrate to be processed 02, in particular substrate 02 and / or sheet 02 controlled to move forward.
- a relative negative pressure is preferably used to the substrate to be processed 02, in particular the substrate 02 and / or the arc 02 against at least one
- Pulling and / or pushing transport surface 718 is preferably a Transport movement of the substrate to be processed 02, in particular of the printing material 02 and / or the sheet 02 by a corresponding in particular circumferential
- the suppression is in particular a negative pressure relative to an ambient pressure, in particular relative to an atmospheric pressure.
- suction transport 11 1; 117; 119; 136; 21 1; 31 1; 41 1; 417; 51 1; 561; 61 1; 617; 711; 811; 817; 911; 101 1 is therefore to be understood as meaning a device which has at least one movable transport surface 718, in particular as
- Counter-pressure surface 718 is used and, for example, at least partially at least in the transport direction T is movable.
- a transport surface 718 is a surface 718 which serves at least temporarily and / or at least partially as a counter-pressure surface 718, for example, depending on the position of the component having the transport surface 718.
- the suction transport 11 11; 117; 119; 136; 21 1; 311; 411; 417; 511; 561; 611; 617; 71 1; 81 1; 817; 91 1; 1011 at least one vacuum chamber 719, which is connected by means of a suction line 721 with at least one vacuum source 733.
- the vacuum source 733 has, for example, a fan 733.
- the at least one vacuum chamber 719 has at least one mammal opening 722, which serves to suck in the substrate 02 to be processed, in particular the printing substrate 02 and / or the sheet 02.
- the suction transport 11 11; 117; 119; 136; 211; 31 1; 41 1; 417; 51 1; 561; 61 1; 617; 71 1; 81 1; 817; 91 1; 1011 and size of the sheet 02 the sheets 02 are in a the at least one mammalian opening 722
- the transport surface 718 has one or more
- the suction openings 723 are preferably used to suppress the suction from the mammal opening 722 of the vacuum chamber 719 to the
- the mammal opening 722 acts on the sheets 02, that it is sucked against the transport surface 718, without the transport surface 718 would have suction openings 723.
- at least one deflection 724 is arranged, which provides directly or indirectly for a circumferential movement of the at least one transport surface 718.
- the at least one deflection 724 and / or the transport surface 718 itself driven and / or driven, in particular to provide for a movement of the sheet 02.
- a first embodiment of a suction transport 11 1; 117; 119; 136; 21 1; 31 1; 411; 417; 51 1; 561; 61 1; 617; 71 1; 81 1; 817; 91 1; 1011 is a suction belt 11 1; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 101 1.
- Under a suction belt 1 11; 1 17; 1 19; 136; 211; 311; 411; 417; 511; 561; 611; 617; 71 1; 81 1; 817; 911; 1011 is to be understood as a device that is at least one flexible one
- Conveyor belt 718; 726 which serves as a transport surface 718.
- the at least one conveyor belt 718; 726 is preferred by as pulleys 724 and / or
- Conveyor belt 718; 726 preferably has a plurality of suction openings 723. Alternatively or additionally, a plurality of conveyor belts 718; 726 with respect to
- the at least one conveyor belt 718; 726 preferably covers in at least a portion of its circulation path the at least one mammal opening 722 of the at least one vacuum chamber 719. More preferably, the vacuum chamber 719 is only through the suction openings 723 of the at least one conveyor belt 718; 726 connected to an environment and / or arc 02.
- support means are arranged, which prevent the at least one conveyor belt 718; 726 is pulled too far or at all into the vacuum chamber 719 and / or that ensure that the transport surface 718 assumes a desired shape, for example, such that they at least in the area in which their intake ports 723 with the
- Vacuum chamber 719 are connected, forms a flat surface. By a circumferential movement of the at least one conveyor belt 718 then results in a
- a second embodiment of a Saugtransportstoffs 11 1; 117; 119; 136; 21 1; 31 1; 411; 417; 51 1; 561; 61 1; 617; 71 1; 81 1; 817; 91 1; 1011 is a Saugkastenband 11 1; 117; 1 19; 136; 21 1; 31 1; 41 1; 417; 51 1; 561; 611; 617; 711; 811; 817; 91 1; 1011.
- the suction boxes 718; 727 preferably each have at least one suction chamber 728.
- the respective suction chamber 728 is preferably open in one direction through at least one flow opening 729 to the outside. This at least one flow opening 729 is preferably used to forward a negative pressure from the vacuum chamber 719 in the respective suction chamber 728.
- the at least one flow opening 729 is, for example, arranged laterally or arranged such that it points at least temporarily in or against a vertical direction V.
- the suction boxes 718; 727 preferably each have a plurality of suction openings 723.
- the suction boxes 718; 727 are preferably formed relatively stiff in itself.
- Suction boxes 718; 723 are preferably flexibly connected to one another, in particular via at least one connecting means 731.
- the at least one connecting means 731 is designed for example as a traction means 731, in particular belt 731 or belt 731, more preferably as a completely circulating and / or endless connecting means 731.
- all suction boxes 718 ; 727 at least one same
- the at least one mammal opening 722 of the at least one vacuum chamber 719 More preferably, the vacuum chamber 719 is then only through the suction openings 723 of the suction boxes 718; 727 connected to the environment and / or arc 02.
- the at least one suction box belt 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 is preferably deflected by deflecting means 724 formed as deflecting rollers 724 and / or deflecting rollers 724 and is preferably self-contained so that an endless circulation is possible.
- the deflecting means 724 interact directly with the traction means 731 and / or drive it.
- the suction boxes 718; 727 each have a flat transport surface 718, so that several suction boxes in a row corresponding to a larger plane
- 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 is a roller suction system 111;
- Under a roller suction system 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 81 1; 817; 91 1; 1011 is a device in which the at least one transport surface 718 is formed from at least parts of lateral surfaces 718 of a multiplicity of transport rollers 724 and / or transport rollers 724.
- the transport rollers 724 and / or transport rollers 724 thus each form closed and rotating parts of the transport surface 718.
- the roller suction system 11 1; 117; 119; 136; 211; 31 1; 41 1; 417; 51 1; 561; 61 1; 617; 71 1; 81 1; 817; 91 1; 1011 preferably has a plurality of mammalian openings 722. These mammal openings 722 are preferably arranged at least between adjacent transport rollers 724 and / or transport rollers 724.
- At least one cover mask 734 is arranged, which preferably represents a boundary of the vacuum chamber 719.
- the mask 734 preferably has the plurality of mammalian openings 722.
- the mask 734 preferably forms a substantially flat surface.
- Transport rollers 724 arranged such that they are cut from this flat surface and further preferably only to a small extent, for example, only a few millimeters protrude above this flat surface, in particular in one of the
- Vacuum chamber 719 facing away.
- the mammal openings 722 are then preferably in the shape of a frame and surround at least one of each
- Transport rollers 724 and / or transport rollers 724 are then, for example, in addition to separate the transport rollers 724 and / or transport rollers 724.
- some or all of the transport rollers 724 and / or transport rollers 724 extend through openings of the mask 734 that are not connected to the vacuum chamber 719. Such openings are then, for example, in addition to separate
- Transport surface 718 are held in which they the mammal opening 722 are opposite.
- 1011 is a high one
- 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 is at least one suction roller 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011.
- 817; 911; 1011 is to be understood a role whose lateral surface serves as a transport surface 718 and a plurality of suction ports 723 and which has in its interior at least one vacuum chamber 719, for example by means of a
- Suction line 721 is connected to at least one negative pressure source 733.
- At least one cleaning device is arranged, which is a cleaning of the respective transport surface 718 of the respective suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 serves.
- this cleaning device is designed as a suction device and / or blowing device and / or as a stripping device and / or preferably serves for a removal of
- the cleaning device is, for example, on a side facing away from the transport of substrate 02, in particular substrate 02 and / or sheet 02 transport path side of the suction conveyor 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 and / or aligned with the respective transport surface 718.
- the sheet processing machine 01 is characterized in that at least one cleaning device for cleaning at least one means of transport 111; 117; 119 of the substrate supply device 100 is arranged and / or that at least one cleaning device for cleaning at least one transport means 411; 417; 611; 617; 811; 817 a coating unit 400; 600; 800, in particular a non-impact coating unit 400; 600; 800 is arranged and / or that at least one cleaning device for cleaning at least one transport means 211 of the preparation device 200 is arranged and / or that at least one cleaning device for cleaning at least one transport means 561 of
- Aftertreatment device 550 is arranged and / or that at least one
- Transport device 700 is arranged and / or that at least one
- Shaping 900 is arranged and / or that at least one
- Substrate discharging device 1000 is arranged.
- respective suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 are at least two arrangements of the respective suction transport means 111 described below; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 possible.
- a first arrangement is one of the respective suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 defined portion of the transport of substrate 02, in particular substrate 02 and / or sheet 02 provided transport path below the particular movable transport surface 718, which serves in particular as counter-pressure surface 718 and, for example, at least partially at least in the transport direction T is movable.
- the respective suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 then as upper suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 formed, the mammalian openings 722 or suction ports 723 at least during their connection to the at least one vacuum chamber 719 preferably at least or only pointing down and / or its suction is preferably at least or only directed upwards.
- the sheets 02 are then from the
- the respective suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 then as lower suction transport
- the sheets 02 are then from the
- 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 depends, for example, whether in a preceding and / or in a following unit 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 an upper or a lower main surface of the sheet 02 has been processed and / or should be.
- Suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 can be formed, for example, by being used for the transport of
- Substrate 02 in particular substrate 02 and / or sheet 02 provided
- Transport path at least in a partial area both from a lower
- Suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 as well as an upper suction conveyor 111; 117 is limited. That suction transporting means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611;
- the mammalian openings 722 and / or the suction openings 723 are chosen to be so small that a volume passing through them will be very small, even if they are not covered by a sheet 02. Then, on an adjustment be dispensed to the width of the sheet 02.
- suction transport means 111 follow; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011.
- These embodiments are particularly advantageous and preferred in accordance with the first embodiment as the respective suction belt 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711;
- the embodiments also apply to other embodiments of suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711;
- the sheet-fed printing machine 01 preferably has at least one suction belt 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817;
- This at least one suction transport 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 preferably has at least one in particular flexible conveyor belt 718; 726, with at least one transport section of its circulation path parallel to the
- the at least one conveyor belt 718; 726 preferably has a plurality of suction openings 723.
- the transport section is stationary, even with movement of the conveyor belt 718; 726 and in particular is not part of the conveyor belt 718; 726 permanently assigned.
- At least two, more preferably at least three, even more preferably at least five and even more preferably at least ten are separate from each other and / or along the transport direction T provided for the transport of substrate 02, in particular substrate 02 and / or sheet 02 separable vacuum chambers 719 arranged one behind the other, each have at least one mammal opening 722.
- a separation is to be understood in particular a fluidic separation. This separation is preferably complete, in particular such that a connection only at most via lines connected to a vacuum source 733 and / or through the suction openings 723 of the conveyor belt 718; 726 and an ambient atmosphere is present.
- a respective conveyor belt 718; 726 a plurality of vacuum chambers 719 are assigned, which in the transport direction T successively influence different areas. In particular, this is to be distinguished from an arrangement of a plurality of at least partially successively arranged conveyor belts.
- the negative pressure is transmitted substantially only through those intake ports 723 which are in communication with the respective negative pressure chamber 719.
- Unlike a large vacuum chamber 719 may be several small
- vacuum chambers 719 act individually and in particular individually closed to an environment at least partially closed. This closure takes place on the one hand by the conveyor belt 718; 726 itself and on the other hand by those components of sheet 02, the corresponding intake openings 723 cover. If too small a proportion of the suction ports 723 is covered, the suppression by incoming ambient air decreases. This could lead to the sheets 02 no longer being held adequately. This danger is small bow 02 and / or large distances between sheet 02 and / or a first sheet 02 and / or a last sheet 02. By dividing into a plurality of vacuum chambers 719 along the transport section is taken to ensure that not in all areas of Oppression can decrease at the same time.
- each intake opening 723 has a larger proportion of a total number of the intake openings 723 just assigned to the respective vacuum chamber 719. Therefore, a relatively small number of sealed suction ports 723 suffice to suppress the pressure in the respective one
- Suction of the suction transport 11 11; 117; 119; 136; 211; 311; 411; 417; 51 1; 561; 611; 617; 71 1; 81 1; 817; 91 1; 1011 along the transport direction T vary.
- pump power and thus energy can be saved.
- the individual vacuum chambers 719 are individually with negative pressure
- the processing machine 01 which is preferably designed as a sheet-fed printing press 01, is therefore preferably characterized in that at least a first of these at least two vacuum chambers 719 arranged one behind the other via at least one in particular first
- Suction line 721 is connected to at least one first vacuum source 733 and / or arranged connectable. Furthermore, at least one other, in particular second, of these at least two vacuum chambers 719 arranged behind one another is preferably via at least one suction line 721, in particular a different and / or second suction line 721 with at least or exactly another, in particular second vacuum source 733 connected and / or arranged connectable. More preferably, this at least one other of these at least two successively arranged vacuum chambers 719 connected via the at least one suction line 721 exclusively with the at least one other, in particular second vacuum source 733 and / or arranged connectable.
- Suction line or first or second vacuum source 733 etc. is used here only for the distinctness and does not relate to an order or arrangement of these components.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one first of these, arranged at least two in succession
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least a second of these at least two vacuum chambers 719 arranged one behind the other via at least one in particular second suction line 721 and at least one second controllable and / or controllable valve 737 with the at least one first
- Vacuum source 733 connected and / or arranged connectable. Then, a vacuum source 733 can be used for a plurality of vacuum chambers 719 and an expenditure on equipment can be kept as low as possible.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one other and / or second thereof arrange at least two consecutively Vacuum chambers 719 via at least one other and / or second suction line 721 and at least one other and / or second controllable and / or controllable valve 737 with at least one other and / or second vacuum source 733 connected and / or arranged connectable.
- the processing machine 01 which is preferably designed as a sheet-fed printing press 01, is preferably characterized in that along the transport section of the at least one conveyor belt 718; 726 at least one coating station 409; 609; 809 at least one
- Coating unit 400; 600; 800 of the sheet printing machine 01 is arranged.
- Conveyor belts 718; 726 arranged at least one drying device 500 and / or at least one drying device 506 of the sheet printing machine 01.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least two, preferably at least three, more preferably at least five, and even more preferably at least seven vacuum chambers 719 which are separate from one another and / or separable with respect to the transverse direction A. are arranged side by side, each having at least one mammal opening 722, each of at least one conveyor belt 718; 726 of the Saugtransportstoffs 1 11; 117; 119; 136; 21 1; 31 1; 41 1; 417; 511; 561; 61 1; 617; 71 1; 81 1; 817; 91 1; 1011 are arranged at least partially covered.
- These are for example a plurality of conveyor belts 781; 726 or preferably a common conveyor belt 718; 726.
- the sheet-fed printing machine 01 is characterized in that at least one of these at least two side by side
- Vacuum chambers 719 connected via at least one other suction line 721 in particular exclusively with another vacuum source 733 and / or arranged connectable.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one first of these, arranged at least two side by side
- the preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that at least one of these at least two juxtaposed vacuum chambers 719 via at least one suction line 721 and at least one other controllable and / or controllable valve 737 with this at least one
- Vacuum source 733 connected and / or arranged connectable.
- the sheet-fed printing press 01 is preferably characterized in that at least one other of these at least two arranged side by side
- the processing machine 01 which is preferably designed as a sheet-fed printing press 01, is preferably characterized in that at least two, more preferably at least three, even more preferably at least five, and even more preferably at least seven, with respect to the transverse direction A.
- separate and / or separable vacuum chambers 719 are arranged side by side, whose pairwise related to the transport direction T relative position both partially overlap and partially different.
- Vacuum chambers 719 arranged in this way are also called negative pressure chambers 719 arranged offset in the transporting direction T.
- bow 02 can still better relative to the conveyor belt 718; 726 are held.
- an arc 02 may at the same time remain in the effective range of another vacuum chamber 719 during an inlet into an effective region of a next vacuum chamber 719 or in the case of an outlet from an effective region of a previous vacuum chamber 719. This is
- sheet-fed printing machine 01 is additionally distinguished by the fact that at least one of these at least two vacuum chambers 719 arranged offset from one another in the transport direction T has at least one
- Suction line 721 is connected to at least one negative pressure source 733 and / or arranged connectable and at least one other of these at least two in
- Transport direction T mutually offset vacuum chambers 719 connected via at least one other suction line 721 in particular exclusively with another vacuum source 733 connected and / or arranged connectable.
- the preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that at least a first of these at least two in T ransportraum T to each other arranged offset vacuum chambers 719 via at least one suction line 721 and at least one controllable and / or controllable valve 737 connected to at least one negative pressure source 733 and / or arranged connectable.
- the preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that at least one of these at least two mutually offset in the transport direction T vacuum chambers 719 via at least one suction line 721 and at least one other controllable and / or controllable valve 737 with this at least one
- Vacuum source 733 connected and / or arranged connectable is preferably connected and / or arranged connectable.
- the preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that at least one of these at least two mutually offset in the transport direction T vacuum chambers 719 via at least one suction line 721 and at least one other controllable and / or controllable valve 737 insbesondre exclusively connected to another vacuum source 733 and / or is arranged connectable.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one of a vacuum chamber 719 or a suction line 721
- Sheet press 01 trained sheet processing machine 01 is in communication, which also has access to data on a position of at least one sheet 02 and / or data to a rotational position of at least one participating in the transport of at least one arc 02 drive.
- preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that at least one of a vacuum chamber 719 or a suction line 721 associated vacuum source 733 is connected to a machine control of particular designed as a sheetfed press 01 sheet processing machine 01 in combination, the Access to data about a location of at least one arc 02 and / or has data on a rotational position of at least one drive involved in the transport of the at least one arc 02. By accessing these data, it is possible to apply only those negative pressure chambers 719 which are sufficiently covered or will soon be in order to actually hold one or more sheets 02. The area activated, ie with oppression
- acted upon vacuum chambers 719 can then be moved with each sheet 02 and / or at least partially lead this and / or run after this to a small extent, for example, for security reasons. This way will
- At least two, more preferably at least three, even more preferably at least five and even more preferably at least ten, in particular with respect to the transport direction T, are separated from one another along the transport path provided for the transport of substrate 02, in particular substrate 02 and / or sheet 02. or separable negative pressure chambers 719 arranged one behind the other, each having at least one mammalian opening 722.
- the at least one conveyor belt 718 covers; 726 in his transport section of his
- Circulation path each at least one mammal opening 722 more and more preferably all of these successively arranged vacuum chambers 719 at least partially.
- the method is characterized in particular by the fact that a respective suppression of at least two consecutively arranged
- Vacuum chambers 719 each individually and temporally varying depending on at least of such data is affected, which characterize a position of the at least one sheet 02 along the transport section, in particular along the transport section of the circulation path of the at least one conveyor belt 718; 726th
- the method is characterized by the fact that the at least one sheet 02 thereby by suppressing against a transport surface of a provided with suction openings 723, in particular flexible conveyor belt 718; 726 of the suction conveying means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 is pulled.
- the negative pressure is preferably determined by a difference between an ambient pressure on the one hand and a pressure within a respective one
- Vacuum chamber 719, the mammalian opening 722 of the conveyor belt 718; 726 is at least partially covered, on the other hand.
- the method is characterized in that the at least one arc 02 in at least one
- Coating unit 400; 600; 800 of the sheet printing machine 01 is coated while using this as a suction belt 111; 117; 119; 136; 211; 311; 411; 417; 511;
- the method is characterized in that the at least one sheet 02 is printed in at least one printing unit 600 of the sheet printing machine 01, while using this as the suction belt 111; 117; 119; 136; 211; 311; 411; 417;
- suction transport means 111 formed suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 is transported.
- the processing machine 01 which is designed in particular as a sheet-fed printing machine 01, preferably has the at least one transport belt 718; 726, which is more preferably parallel to at least one transport section of its circulation path extends to the T ransportcardi T along a T eil Societys of T ransport for substrate 02, in particular substrate 02 and / or sheet 02 provided transport path.
- the transverse direction A only exactly one conveyor belt 718 is preferred; 726 arranged.
- a plurality of conveyor belts can be arranged one behind the other and provided for different areas of the transport for substrate 02, in particular substrate 02 and / or sheet 02
- the at least one conveyor belt 718; 726 is not necessarily, but preferably as a conveyor belt 718; 726 one as a suction belt 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 formed suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 formed the sheet-fed press 01, in particular this at least one suction transport means 111; 117; 119; 136; 211; 311; 411; 417; 511; 561; 611; 617; 711; 811; 817; 911; 1011 that at least one
- Conveyor belt 718; 726 has.
- the at least one conveyor belt 718; 726 as described a plurality of suction ports 723 on.
- the preferred trained as a sheet-fed press 01 is characterized
- Processing machine 01 preferably characterized in that along the transport section of the at least one conveyor belt 718; 726 at least one coating station 409; 609; 809 at least one coating unit 400; 600; 800 of the
- Sheetfed press 01 is arranged. Further preferred are along the
- Transport portion of the at least one conveyor belt 718; 726 at least two, even more preferably at least three and even more preferably at least four
- Coating sites 409; 609; 809 at least one coating unit 400; 600; 800 of the sheet printing machine 01 arranged. For example, along the
- the preferred as Sheet-fed press 01 formed processing machine 01 preferably characterized in that at least one Bandausrichtstoff 738 of the at least one conveyor belt 718; 726 with the at least one conveyor belt 718; 726 is arranged in contact and further preferred that by adjusting a position of the at least one
- Bandausrichtstoffs 738 relative to at least one particular stationary frame 427; 431; 508; 627; 631; 827; 831; 744 of the sheet-fed printing press 01 a position of the at least one conveyor belt 718; 7126 with respect to the transverse direction A can be influenced.
- a long-term drift of the at least one conveyor belt 718; 726 with respect to the transverse direction A at least partially and preferably completely compensated, in particular during this at least conveyor belt 718; 726 is moved to transport sheet 02.
- the at least one tape alignment means 738 is at least one
- Bandausrichtwalze 738 formed, more preferably as at least one
- Bandausrichtwalze 738 whose axis of rotation 742 is changeable in their orientation.
- an angle between the axis of rotation 742 of this band alignment roller 738 on the one hand and the axial direction A on the other hand changes, in particular with regard to its magnitude and / or its position in space.
- the at least one band-alignment means 738 is pivotable about an alignment axis whose direction has at least one component oriented orthogonally to the transverse direction A.
- the example of such a Bandausrichtwalze 738 shows the operation of the Bandausrichtstoffs 738.
- Belt alignment roller 738 must have different parts of the conveyor belt 718; 726 depending on their on the transverse direction A related position different lengths cover distances for a total circulation of the at least one conveyor belt 728.
- the at least one conveyor belt 738 experiences a force acting with respect to the transverse direction A and is moved in the course of its circulating movement correspondingly with respect to the transverse direction A.
- This controlled movement is preferably generated only to previously and / or otherwise occurring unwanted movements with respect to Offset transverse direction A.
- the preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that the at least one Bandausrichtstoff 738 at least one radial bearing 739, the axis of rotation 742 at least with respect to a compensation direction W at least relative to at least one particular stationary frame 427; 431; 508; 627; 631; 827; 831; 744 of the sheet printing machine 01 is displaced.
- the at least one radial bearing 739 is linearly displaceable at least in and / or counter to the compensation direction W.
- at least one such radial bearing 739 is at least one radial bearing 739 enabling rotation of the at least one belt alignment roller 738 about its axis of rotation 742
- Bandausrichtstoff 738 at least two spaced in the transverse direction A radial bearings 739, whose axes of rotation 742 at least with respect to a
- Balancing direction W at least relative to each other and / or independently of each other and / or relative to at least one particular stationary frame 427; 431; 508; 627; 631; 827; 831; 744 of the sheet printing machine 01 are arranged displaceably.
- the at least two radial bearings 739 at least in and / or against the balancing direction W linearly displaceable.
- Balancing direction W are movable.
- exactly one strip alignment means 738 designed in particular as a band-alignment roller 738, is arranged, and the at least two radial bearings 739 are both the same
- the preferred as Sheet-fed press 01 formed processing machine 01 preferably characterized in that a reference plane has a normal vector, which is parallel to the
- Transverse direction A is oriented and a Ausretetangente 743 a tangent 743 to a Bermmabrough a section line of the at least one conveyor belt 718; 726 with the reference plane and the contact portion is such a portion in which contact between the at least one conveyor belt 718; 726 on the one hand and the at least one band alignment means 738 on the other hand and the compensation direction W is oriented parallel to the Ausretetangente 743. Then, the position of the at least one conveyor belt 718; 726 are particularly precisely influenced, in particular without a tension of the at least one
- Conveyor belts 718; 726 unnecessarily strong influence. More preferably, the compensation direction W runs parallel to an angle bisector between an inlet direction on the one hand, in the components of at least one conveyor belt 718; 726 move when they reach the at least one band alignment means 738 and / or in which an incoming part of the at least one conveyor belt 718; 726 extends, and a discharge direction on the other hand, in the components of at least one
- Conveyor belts 718; 726 move when they leave the at least one Bandausrichtstoff 738 and / or in which an expiring part of the at least one
- Conveyor belts 718; 726 extends.
- a deflection angle is preferably the angle by which the conveyor belt 718; 726 is deflected between a first and a last contact with the at least one Bandausrichtstoff 738.
- the deflection angle is at most 180 °, more preferably at most 120 °, even more preferably at most 90 ° and even more preferably at most 60 °.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one belt alignment means 738 has at least one alignment drive 741.
- the at least one band-alignment means 738 is designed to be controllable and / or regulatable by means of a computing device, wherein these
- the at least one alignment drive 741 is designed as an electric motor 741 and / or as a pneumatic cylinder 741 and / or as a hydraulic cylinder 741 and / or as a linear drive 741.
- at least one sensor is arranged so as to have a position of the at least one conveyor belt 716; 726 to capture. Signals of this at least one sensor can then be made available, for example, to an operator and / or be used to control and / or control the at least one alignment drive 741.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one belt alignment means 738 exclusively with a lower side of the at least one conveyor belt 718; 726 is arranged in contact and this underside of a provided for contact with substrate 02, in particular substrate 02 and / or sheet 02 transport surface 718 of the at least one
- Conveyor belts 718; 726 is. This ensures that only the forces caused by different lengths of travel act and preferably abrasion on a lateral edge of the at least one conveyor belt 718; 726 is largely avoided.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one tensioning means 736 is provided for setting and / or maintaining a particular mechanical tension of the conveyor belt 718; 726, in particular of the Suction belt 718; 726 is arranged and in particular with this conveyor belt 718; 726 is arranged in contact.
- a clamping means 736 for example, at least one guide roller 736 is arranged, whose axis of rotation is arranged to be displaceable.
- the at least one tensioning means 736 is displaceable in and / or counter to at least one tensioning direction.
- the at least one tensioning means 736 has at least two bearings, in particular radial bearings, which are arranged to be movable parallel to one another orthogonal to the transverse direction A.
- at least one tensioning drive is arranged, by means of which the at least one tensioning means 736 can be displaced.
- the at least one tensioning drive is, for example, as at least electric motor and / or as at least one hydraulic cylinder and / or as at least one pneumatic cylinder and / or as
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the sheet-fed printing machine 01 has at least one non-impact coating unit 400; 600; 800 trained coating unit 400; 600; 800 and the sheet-fed press 01 at least one conveyor belt 718; 726, with at least one transport section of its circulation path parallel to a
- Coating unit 400; 600; 800 thus preferably has at least one print head 416; 616; 816 on.
- This compound is for example direct, but preferably indirect.
- the at least one printhead 416; 616; 816 via at least one positioning device 426; 626; 826 and / or at least one other component with the at least one first frame 427; 627; 827 connected.
- the first frame 427; 627; 827 is preferably the frame 427; 627; 827 of the
- the first rack 427; 627; 827 preferably has at least two side walls 428 spaced from one another, in particular with respect to the transverse direction A; 628; 828 on. More preferably, the at least one printhead 416; 616; 816, in the transverse direction A, between the at least two side walls 428; 628; 828 of the first frame 427; 627; 827 arranged.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one conveyor belt 718; 726 via at least one deflection means 724 and at least one radial bearing with at least one second frame 431; 508; 631; 831; 744 is connected, more preferably with at least one side support 432; 632; 832 of the second frame 431; 508; 631; 831; 744 and even more preferably with at least two side supports 432; 632; 832 of the second frame 431; 508; 631; 831;
- the second frame 431; 508; 631; 831; 744 is, for example, a frame 431; 508; 631; 831; 744 of another unit 500; 700 or module 500; 700, for example, a drying unit 500 or a drying module 500 or a Transport Aggregate 700 or transport module 700.
- 831; 744 is alternatively, for example, a subframe 431; 631; 831 of the
- the second frame 431; 508; 631; 831; 744 preferably has at least two side supports 432, which are spaced apart from one another, in particular with respect to the transverse direction A; 632; 832 on. More preferably, this is at least one conveyor belt 718; 726 relative to the transverse direction A at least partially between the at least two side supports 432; 632; 832 of the second frame 431; 508; 631; 831; 744 arranged.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one first frame 427; 627; 827 apart from at least one footprint at most flexible connections to the second frame 431; 508;
- this at least one footprint preferably a footprint below the at least one coating unit 400; 600; 800 and / or below the sheetfed press 01 is.
- Coating module 400; 600; 800 or coating unit 400; 600; 800 is assignable, but still preferred by the second frame 431; 508; 631; 831; 744 and from the first frame 427; 627; 827 is so far arranged mechanically decoupled.
- the at least one set-up surface is preferably at least one surface, which acts as a bottom-up support surface and / or the at least one coating unit 400; 600; 800 and / or the sheet-fed printing machine 01 carries.
- the at least one footprint is, for example, a floor of a building or a component of a sufficiently stable and low-vibration substructure.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the second frame 431; 508; 631; 831; 744 at least two, in particular with respect to the transverse direction A spaced from each other side supports 432; 632; 832 and that the at least one conveyor belt 718; 726 relative to the transverse direction A at least partially between the at least two side supports 432; 632; 832 of the second frame 431; 508; 631; 831; 744 is arranged and / or at least one of the at least two side supports 432; 632; 832 via at least one cross member 746 of the second frame 431; 508; 631; 831; 744 with at least one other of the at least two side supports 432; 632; 832 of the second frame 431; 508; 631; 831; 744 is arranged connected.
- Such trusses 746 of the second frame 431; 508; 631; 831; 744 serve in particular the second frame 431; 508; 631; 831; Stabilize 744. Preferably, they are designed for optimized stability and therefore in different relations to the at least one conveyor belt 718; 726 arranged.
- at least one such traverse 746 of the second frame 431; 508; 631; 831; 744 at least partially vertically below at least one section of the at least one conveyor belt 718, in particular designed as a transport section; 726 is arranged.
- At least one such traverse 746 of the second frame 431; 508; 631; 831; 744 at least partially vertically below at least a portion of the at least one conveyor belt 718; 726, which is at least partially vertically below a further section, in particular formed as a transport section, of this at least one conveyor belt 718; 726 is arranged.
- Conveyor belts 718; 726 is arranged.
- at least one such traverse 746 of the second frame 431; 508; 631; 831; 744 at least partially vertically above at least a portion of the at least one conveyor belt 718; 726 disposed and at least partially vertically below a particular designed as a transport section further portion of this at least one
- Conveyor belts 718; 726 arranged.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the first frame 427; 627; 827 at least two, in particular with respect to the transverse direction A spaced side walls 428; 628; 828 and that the at least one printhead 416; 616; 816 related to the transverse direction A at least partially between the at least two side walls 428; 628; 828 of the first frame 427; 627; 827 is arranged and / or at least one of the at least two side walls 428; 628; 828 of the first frame 427; 627; 827 via at least one traverse 433; 633; 833 of the first frame 427; 627; 827 with at least one other of the at least two sidewalls 428; 628; 828 of the first frame 427; 627; 827 is arranged connected.
- Such trusses 433; 633; 833 of the first frame 427; 627; 827 serve in particular the first frame 427; 627; To stabilize 827.
- they are designed for optimized stability and therefore in different relations to the at least one conveyor belt 718; 726 arranged.
- at least one such traverse 433; 633; 833 of the first frame 427; 627; 827 at least partially vertically below at least one section of the at least one conveyor belt 718 designed in particular as a transport section; 726 arranged.
- At least one such traverse 433; 633; 833 of the first frame 427; 627; 827 at least partially vertically below at least one section the at least one conveyor belt 718; 726, which is at least partially vertically below a further section, in particular designed as a transport section, of this at least one conveyor belt 718; 726 is arranged.
- at least one such traverse 433; 633; 833 of the first frame 427; 627; 827 at least partially vertically above at least one
- At least one such traverse 433; 633; 833 of the first frame 427; 627; 827 at least partially vertically above at least one section of the at least one conveyor belt 718, in particular formed as a transport section; 726 disposed at least partially vertically above a further portion of this at least one
- Conveyor belts 718; 726 is arranged. Alternatively or additionally, at least one such traverse 433; 633; 833 of the first frame 427; 627; 827 at least partially vertically above at least a portion of the at least one conveyor belt 718; 726 arranged and at least partially vertically below a further formed in particular as a transport section further portion of this at least one conveyor belt 718; 726 arranged.
- the processing machine 01 which is preferably designed as a sheet-fed printing press 01, is preferably characterized in that one directly or indirectly with the side walls 428; 628; 828 of the first frame 427; 627; 827 connected printhead assembly 424; 624; 824 at least partially vertically above at least one section of the at least one conveyor belt 718, in particular formed as a transport section; 726 is arranged.
- Sheet-fed press 01 formed processing machine 01 preferably characterized in that at least one in particular designed as a transport section of the at least one conveyor belt 718; 726 passes through an aperture at least partially formed by at least one printhead assembly 424; 624; 824 and at least partially at least one traverse 433; 633; 833 of the first frame 427; 627; 827 and at least partially from the side walls 428; 628; 828 of the first frame 427; 627; 827 is limited.
- the boundaries of this opening are preferably in one
- Transport direction T and the most 50 cm and more preferably at most 25 cm are arranged spaced from each other.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one drive M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M 1000 of the conveyor belt 718; 726 at least partially directly or indirectly rigidly with the second frame 431; 508; 631; 831; 744 is arranged connected.
- this is at least one drive M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000 by the separation of the racks 427; 627; 827; 431; 508; 631; 831; 744 preferably from the first frame 427; 627; 827 decoupled that movements of this drive M100; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; M1000 and / or
- Movements of the at least one conveyor belt 718; 726 have no or very little influence on a print quality, in particular in the case of a non-impact printing unit 400; 600; 800th
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one energy-emitting device 501; 502; 503 at least one
- Drying device 500 and / or at least one drying device 506 on a portion of the at least one conveyor belt 718; 726 is arranged aligned and that this at least one energy delivery device 501; 502; 503 rigid or via a positioning device 424; 624; 824 with the first frame 427; 627; 827 or with the second frame 431; 508; 631; 831; 744 or with one of the first frame 427; 627; 827 and the second frame 431; 508; 631; 831; 744 different third frame is arranged connected.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that along the transport path provided for the transport of substrate 02, in particular printing material 02 and / or sheet 02 in front of the at least one
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that along the transport path provided for the transport of substrate 02, in particular printing material 02 and / or sheet 02 in front of the at least one
- the substrate supply device 100 is preferably independent of further units 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 trained, provided that there are no contradictions.
- stacks 104 are fed manually and / or by means of an automated system to the substrate feed device 100, in particular in the form of stacks 104 preferably arranged on carrier units 113.
- carrier units 113 are, for example, pallets 113, stacks 104, which are supplied as such to the substrate feed device 100 or are also referred to as feeder stack 104, for example.
- the carrier units 1 13 or pallets 1 13 preferably have correspondingly oriented grooves, for example for an intervention of stack carriers, in particular sheets 02 and / or stack 104 of the
- the at least one substrate feed device 100 is preferably used to separate sheets 02 of a stack 104 or tray stack 106 and more preferably singly to one or more subsequent units 200; 300; 400; 500; 550; 600; 700; 800; 900 feed.
- the at least one substrate feed device 100 has, for example, at least one stack turning device 101 or sheet turning device.
- the stack turning device 101 preferably serves to turn over a stack 104 or partial stack 106 comprising at least a plurality of sheets 02 as a whole. A turning of the bow 02 is useful, for example, if two opposite
- Main surfaces of the bow 02 differ from each other and one subsequent
- Processing should take place on a particular of these major surfaces. This is the case regardless of whether the sheets 02 are turned individually or whether the stack 104 is turned as a whole or whether partial stacks 106 are turned. For example, this is true if the sheets 02 have already been processed before being joined to the stack 104 and / or if the sheets 02 are distinguishable on their own
- a stack holding region 102 is a region 102, in particular a space region 102, in which, at least during an operation of the processing machine 01, at least one stack 104 is arranged, which is divided for the subsequent processing of its sheets 02.
- the stack holding area 102 preferably comprises the entire space area which is provided for arranging such a stack 104,
- This stack 104 is preferably the feeder stack 104.
- the stack holding area 102 is the space area 102, which at least during operation of the processing machine 01 for arranging at least one stack 104 formed as feeder stack 104 Distribution is provided.
- the at least one stack turning device 101 is, with respect to an intended transport path, the sheet 02, for example, the pile holding region
- the stack 104 can be turned as a whole before it is fed to a further processing by the processing machine 01 and in particular split.
- at least one stack turning device 101 is arranged downstream of the sheet holding region 102 with respect to the intended transport path. Then the stack turning device 101 is preferred as
- Part stack turning device 101 is formed.
- a partial stack separator For example, a partial stack separator
- a partial stack 103 which serves to separate a particular upper part stack 106 from the stack holding portion 102 arranged in the stack 104.
- a partial stack 103 preferably has more than one sheet 02.
- the partial stack separator 103 is
- the stack 104 is a multiple arc 02 having Operastapel 106 removed as follows. First, the stack 104 is brought to a height in which a top sheet 02 of the stack 104 is at a removal height. Then, a partial stack thrust device 103 is moved toward the stack 104, in particular in the transport direction T, until it comes into contact with at least one sheet 02 of the stack 104. This is at least one sheet 02, for example, the bottom sheet 02 of the sub-stack 106. Thereafter, the partial stack thruster 103 is moved further and thereby moves the at least one standing in contact with her bow 02 and preferably arranged over sheet 02. This moving sheet 02 are thus common as a partial stack 106 preferably in the transport direction T moves, in particular pushed.
- this partial stack 106 is then first supplied to the partial stack turning device 101.
- the partial stack turning device 101 has, for example, at least one transport means 107, which preferably as at least one conveyor belt 107, on preferably at least two conveyor belts 107 is formed.
- the transport means 107 is preferably at least partially pivotable about a pivot axis 108, which is further preferably oriented horizontally and / or orthogonal to the intended transport direction T and / or parallel to the transverse direction A.
- the at least two conveyor belts 107 can be moved toward one another, in particular with respect to the vertical direction V.
- the partial stack 106 can be held, in particular clamped, between the two conveyor belts 107 and pivot together with them about the pivot axis 108, in particular substantially °.
- at least one of the at least two conveyor belts 107 is preferably activated.
- these can each be operated in two directions in order to be able to use the transport of the partial stack 107 independently of the current pivot position of the transport means 107.
- Stack turning device 101 or a partial stack turning device 101 is arranged or not preferred at least one singulator 109 or
- Transport direction T spaced and / or behind each other.
- a separating device 109 then serves for at least partial separation of sheets 02 and another separating device 109 for a subsequent complete one
- These at least one separating device 109 or sheet separating device 109 is arranged, for example, with respect to the transport path for the transport of substrate 02, in particular printing material 02 and / or sheet 02, after the partial stack turning device 101. If no partial stack turning device 101 is arranged, the partial stack 106 after its generation is preferably equal to the separating device 109 or Sheet separating device 109 supplied. In particular, if no partial stack separator 103 is arranged and / or no partial stacks 106 are produced, the singulator 109 or sheet singulator 109 preferably acts directly on a respective stack 104. For example, this stack 104 is the feeder stack 104, which is more preferably located in the stack holding area 102. Then, the at least one separating device 109 is designed, for example, as a removal device 114.
- the at least one separating device 109 or sheet separating device 109 preferably at least partially separates the sheets 02 of the stack 104 or partial stack 106.
- a partial or complete separation of the sheets 02 of the stack 104 or sub-stack 106 from below takes place in a first embodiment of a
- Bogenunterzelungs acquired 109, for example by the stack 104 or sub-stack 106 on at least one lower T ranslationselement 11 1, in particular a lower transport means 11 1 lying in particular continuously, for example in
- Transporting direction T is transported while running at least partially against an obstacle 1 12, which can pass only a lower portion of the stack 104 or sub-stack 106, for example, only a sheet 02 or two sheets 02 or a few sheets 02.
- the height of the obstacle 1 12 is preferred to the Thickness of the sheet 02 and / or adapted to a desired type of singulation.
- a weir 1 12 is used, which is preferably formed as a plate 112. If the sheets 02 are to be completely separated, a height below the obstacle is preferably greater than the thickness of the sheets 02 and smaller than twice the thickness of the sheets 02. Suffices an incomplete one
- the height under the obstacle is preferably correspondingly greater than twice the thickness of the sheet 02 and for example less than four times the thickness of the sheet 02.
- the entire stack 104 is isolated or incomplete isolated, so scaly, especially if no Operastapelabtrenner 103 is arranged.
- the stack 104 is successively divided by means of the Operastapelabtrenners 103 in sub-stacks 106, which are then turned or unfolded further transported and then sporadically isolated or incomplete, so be mashed.
- the lower T ranslationselement 1 for example, as a suction transport 11 1, in particular as a suction belt 11 1 and / or Saugkastenband 1 11 and / or
- Roller suction system 1 11 formed.
- a lower translation element 1 11 in this case, at least a relatively simple conveyor belt 1 11 to
- the lower translation element 11 1 is preferably supplied from the part stack turning device 101, a respective sub-stack 106, which is at least partially isolated by means of the obstacle 112 and is converted to a stream of arranged on the at least one lower translation element 11 1, scattered or scattered lying bow 02.
- an exact position of the sheet 02 is preferably not yet necessary, since this exact position is preferably produced only in a subsequent treatment by means of at least one further separating device 109 and / or by means of a contact device 300.
- the at least one investment device 300 is part of the
- Substrate supply device 100 or independently formed. A separation of the sheets 02 of the stack 104 or partial stack 106 or in particular of a storage stack or plant stack from below takes place in a second
- Embodiment of a sheet separating device 109 for example, by the stack 104 or part stack 106 or storage stack or investment stack in one
- Storage device 134 is stored and at least one particular primary
- Acceleration means 136 is brought to preferably controlled and / or regulated selected times with a respective lowest sheet 02 of the stack 104 or sub-stack 106 or storage stack or plant stack in contact and / or controlled and / or regulated acts on this lowest sheet 02.
- a storage stack formed as an investment stack if the separation from below by means of this sheet separation device 109
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that a respective section of the substrate transport 02, in particular printing material 02 and / or sheet 02, provided by the at least one primary acceleration means 136 is provided Transport path has a minimum radius of curvature which is at least 2 meters and / or in the entire region of the respective primary acceleration means 136 has a direction which deviates at most by 30 ° from at least one horizontal direction and / or from the transport direction T.
- the preferably designed as a sheet-fed press 01 processing machine 01 and in particular the Substratzufufhrehre 100 preferably has at least one
- the Storage device 134 for at least one storage stack of sheets 02 on.
- the Storage device 134 is preferably arranged with respect to the transport path for transporting substrate 02, in particular printing material 02 and / or sheet 02, to the stack-holding region 102.
- two memory stacks are provided, one of which is designed as an investment stack and one as a buffer stack.
- sheets 02 of the storage device 134 originating from a first stack 104 which is designed, for example, as an feeder stack 104, and in particular the at least one storage stack, can be fed in in particular from above.
- Storage device 134 the at least one acting from below separation device 109, which is adapted to remove a respective lowest sheet 02 of a storage stack and in particular a plant stack individually.
- this lowermost sheet 02 is preferably the lowermost sheet 02 of a plurality of sheets 02
- Singling device 109 is therefore preferably a storage stack and in particular a plant stack from below singulating and / or singulated capable.
- the storage device 134 preferably has at least one front stop 137, which is preferably designed as a front wall 137 and / or serves as an anterior mark 127. Alternatively or additionally, a separate front brand 127 is arranged.
- Front stop 137 preferably prevents unwanted movement of sheet 02 in the transport direction T before they have become the lowest sheet 02 of the investment stack.
- the front stop 137 preferably prevents tilting or other disintegration of the at least one arranged in the storage device 134
- Memory stack in particular of the investment stack and / or the buffer stack.
- the storage device 134 preferably has at least one side stop 139, which is preferably designed as a side wall 139. Further preferred with respect to the transverse direction A on both sides of the memory device 134 side stops 139th arranged. Alternatively or additionally, at least one separate side mark 128 is arranged.
- the at least one side stop preferably prevents unwanted movement of sheet 02 in and / or against the transverse direction A, before they have become the lowest sheet 02 of the investment stack.
- the at least one side stop 139 preferably prevents a tilting or other disintegration of the at least one storage stack arranged in the storage device 134, in particular of the plant stack and / or of the buffer stack.
- the storage device 134 preferably has at least one backstop 141, which is preferably designed as a rear wall 141.
- the at least one backstop 141 is arranged with respect to the transport direction T in front of the at least one storage stack and preferably prevents unwanted movement of sheet 02 against the transport direction T, before they have become the lowest sheet 02 of the investment stack.
- the back stop 141 preferably prevents a tilting or other disintegration of the at least one storage stack arranged in the storage device 134, in particular the plant stack and / or the buffer stack.
- the separating device 109 preferably has at least one in particular primary acceleration means 136, in particular for accelerating a respectively lower arc 02 of the at least one storage stack or plant stack, more preferably in the transport direction T.
- the at least one primary acceleration means 136 is preferably arranged below the at least one storage stack. More preferably below the at least one investment stack and even more preferably also below the at least one buffer stack.
- the at least one primary acceleration means 136 is preferably arranged below the at least one storage stack. more preferably below the at least one investment stack and even more preferably also below the at least one buffer stack.
- Acceleration means 136 is, for example, as at least one transport roller 136 and / or as at least one conveyor belt 136 and / or at least one
- Suction conveyor 136 in particular suction belt 136 and / or Saugkastenband 136 and / or roller suction 136 and / or suction pads 136 and / or suction roller 136 is formed and / or preferably has at least one conveyor belt 718; 726 on. That described in the foregoing and hereinafter about suction transport means is preferred corresponding.
- a plurality of primary acceleration means 136 are arranged, in particular in the form of a plurality of transport rollers 136 and / or a plurality of conveyor belts 136; 718; 726 and / or a plurality of suction transport means 136th
- a plurality of primary accelerators 136 with respect to
- the at least one primary acceleration means 136 has at least two, more preferably at least three, even more preferably at least five, and even more preferably at least seven transport surfaces 718 separated from each other with respect to the transverse direction A and in particular conveyor belts 718; 726 on.
- Acceleration means 136 can be driven by means of a common primary drive M101.
- At least one spacer 144 is preferred; 144.1; 144.2 arranged.
- the at least one spacer 144; 144.1; 144.2 preferably serves to be able to keep the at least one primary acceleration means 136 at least temporarily and / or controlled and / or regulated from any sheet 02.
- a sheet 02 or a plurality of sheets 02 or a stack of sheets 02 are at least temporarily on the at least one spacer 144; 144.1; 144.2 on.
- the at least one primary acceleration means 136 at least temporarily and / or controlled and / or regulated from any sheet 02.
- a sheet 02 or a plurality of sheets 02 or a stack of sheets 02 are at least temporarily on the at least one spacer 144; 144.1; 144.2 on.
- the at least one primary primary acceleration means 136 are at least temporarily and / or controlled and / or regulated from any sheet 02.
- a sheet 02 or a plurality of sheets 02 or a stack of sheets 02 are at least temporarily on the at least one spacer 144; 144.1
- Accelerator 136 and the at least one spacer 144; 144.1; 144.2 are preferably arranged movable relative to one another at least with respect to the vertical direction V, in particular by vertical mobility of the at least one
- the at least one spacer 144; 144.1; 144.2 formed as at least one provided with recesses support surface for sheet 02 and / or protrude the primary Acceleration means 136 at least partially and / or at least temporarily through the recesses up out.
- the sum of the respective contact surface can be smaller than the total area of the recesses.
- the respective lowermost sheet 02 of the plant stack lies on the spacer 144; 144.1; 144.2, without touching the primary accelerator 136.
- the at least one spacer 144; 144.1; 144.2 lowered and / or raised at least one primary acceleration means 136 the respective lowermost sheet 02 of the plant stack comes into contact with the corresponding at least one primary acceleration means 136.
- this arc 02 becomes
- the at least one primary accelerating means 136 at the moment in which it comes into contact with the lowermost sheet 02 of the plant stack, quiet and then accelerated to accelerate this arc 02 at the same time. It is preferred that the at least one primary
- Acceleration means 136 itself is accelerated at least temporarily, while a respective sheet 02 in particular from a standstill on the first
- Speed v1 is accelerated.
- the at least one primary acceleration means 136 is decelerated and in particular stopped, in particular after it has fallen out of contact with this sheet 02.
- Accelerator 136 eliminates the at least one spacer 144; 144.1; 144.2. Preferably, only the respective at least one primary acceleration means 136 is driven, which is in contact with the currently lowest sheet 02 of the plant stack. Primary acceleration means 136, which are not in contact with any sheet 02 or already with the next sheet 02, are then preferably first stopped. Primary acceleration means 136, which are already out of contact with the currently lowest sheet 02 of the plant stack, are preferably first stopped and / or held or brought out of contact with the next sheet 02. For example, in the case of a Saugtransportffens 136 targeted sections of a suction device can be switched off.
- the at least one primary acceleration means 136 preferably serves alone or further preferably in cooperation with at least one further, in particular secondary acceleration means 19 to accelerate exactly one sheet 02, which has already been oriented with respect to the transport direction T and / or the transverse direction A. , It is preferred along a transport path provided for sheet 02 to the transport path after the at least one primary acceleration means 136 .
- Acceleration means 136 at least one secondary acceleration means 119 is arranged. This acceleration takes place for example from a temporary standstill and / or to a processing speed and / or
- This acceleration is optionally combined with other, especially secondary
- Accelerators 119 made.
- Acceleration means 1 19 is thus a respective arc 02 from a standstill and / or from a first speed v1 to a second speed v2 accelerated while at least one other sheet 02 at the same time with a
- the first speed v1 is preferably a speed different from the processing speed and / or coating speed and / or printing speed.
- the second speed v2 is preferably equal to
- At least one outgoing transport means 119 of the substrate supply device 100 is arranged downstream of the at least one primary acceleration means 136 with respect to the transport direction T.
- This is formed, for example, as at least one transport roller 1 19 or at least a pair of transport rollers 1 19 or as at least one suction transport means 1 19.
- this is at least one outgoing transport means 1 19 also an accelerator 119, in particular the at least one secondary
- Accelerator 119 is at least one secondary
- Acceleration means 119 formed as a suction transport means 119 and / or the at least one secondary acceleration means 119 at least one conveyor belt 718; 726 on.
- the at least one secondary acceleration means 119 has at least two, preferably at least three, more preferably at least five, and even more preferably at least seven transport surfaces 718, which are separated from one another by intermediate spaces, and in particular conveyor belts 718; 726 on. It is preferred that the at least two, preferably at least three, even more preferably at least five and even more preferably at least seven with respect to the transverse direction A from each other by intermediate spaces separated transport surfaces 718 and / or conveyor belts 718; 726 of at least one secondary
- Acceleration means 1 19 are driven by means of a common secondary drive M102.
- the processing machine 01 which is preferably designed as a sheet-fed printing press 01, is preferably characterized in that a respective section of the substrate transport 02, in particular printing material 02 and / or sheet 02, provided by the at least one secondary acceleration means 119 is provided Transport path has a minimum radius of curvature which is at least 2 meters and / or in the entire region of the respective primary acceleration means 1 19 has a direction which deviates at most by 30 ° from at least one horizontal direction and / or from the transport direction T.
- the at least one front stop 137 and / or the at least one front mark 127 preferably serves to align the sheets 02 of the plant stack.
- the at least one front stop 137 and / or the at least one leading edge 127 at least temporarily arranged such that it at least on the second sheet 02 from the bottom of the investment stack influence and / or out of contact with the respective bottom sheet 02 of the investment stack. An alignment then takes place
- a surface provided for contact with sheet 02 of the at least one front stop 137 is oriented counter to the transport direction T.
- at least one front stop 137 is oriented counter to the transport direction T.
- Anpresselement and / or deflector arranged, which causes a system of the sheet 02 to the front stop 137 and / or the front end 127 and, for example, is designed as at least one brush.
- the sheets 02 are always in a defined position with the at least one accelerator 136 in contact and are transported through this in exactly known position on.
- the at least one front stop 137 in its on the vertical Direction V relative position is arranged changeable.
- the at least one front stop 137 and / or the at least one leading edge 127 is adjustable in height to be adapted to different thicknesses of sheet 02.
- Sheet processing machine 02 is larger than a thickness of each of the sheets to be processed 02 and smaller than twice the thickness of each of the sheets to be processed 02.
- the sheet feeder unit 100 preferably has at least one front stop 137 which is arranged along the transport path provided for the transport of substrate 02, in particular printing material 02 and / or sheet 02, between the at least one primary acceleration means 136 on the one hand and the at least one secondary acceleration means 119 on the other hand.
- the abutment device 300 is preferably a component of the substrate feed device 100 and more preferably a component of the singulation device 109.
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is characterized in that the sheet feeder module 100 has at least one suction belt 119; 136; 311
- side-by-side transport belts 1 19; 136; 718; 726, and more preferably at least one displacement means 158; 159 is arranged, by means of which at least one of the at least three transport belts 1 19; 136; 718; 726 in and / or against the transverse direction A is laterally displaceable.
- this is at least one primary acceleration means 136 as suction belt 119; 136; 31 1 formed with these properties and / or is at least one secondary acceleration means 1 19 as a suction belt 119; 136; 31 1 formed with these properties.
- the at least one side stop and / or the at least one side mark 128 is preferably given by the fact that the side stops 139, in particular side walls 139, are movable with respect to the transverse direction A and can be arranged in particular adapted to a width of the sheets 02. As a result, the sheets 02 can slide along their side walls 139 at their conditional upon removal of the respective lowest sheet 02 and preferably downwardly directed movement and brought into an aligned position and / or held in this.
- Transport belts 1 19; 136; 718; 726 which is outside the latitude of the current too
- processing sheet 02 are covered by at least one protective cover.
- This at least one protective cover is for example at least one
- Telescopic sheet formed formed.
- at least one active in particular driven by a drive movement of the sheet 02 against at least one side stop 139 is provided, for example, at a substantially and / or at least with respect to the transport direction T resting sheet 02.
- a lateral alignment for example, before and / or during and or after the acceleration of the sheet 02 with respect to the transport direction T.
- mechanical means for example, before and / or during and or after the acceleration of the sheet 02 with respect to the transport direction T.
- Front stops 137 and / or side stops 139 are corresponding
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the sheet-processing machine 01 has at least two modules 100; 600
- the primary drive M101; M103 and the secondary drive M102 and the at least one further drive M200; M300; M400; M500; M550; M600; M700; M800; M900; M1000 each as position-controlled electric motor M100; M200; M300; M400; M500; M550; M600; M700; M800; M900; M1000 trained.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the drive control of the primary drive M101; M103 and the drive control of the secondary drive M102 are circuit-connected to a machine controller of the sheet processing machine 01, and more preferably that the drive control of the primary drive M101; M103 and the
- Sheet processing machine 01 are connected by circuitry.
- the at least one further module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 is preferred as a coating module 400; 600; 800 and / or pressure module 600 formed and / or non-impact coating module 400; 600; 800 and / or non-impact printing module 600 and / or preferably has at least one print head 416; 616; 816 and / or ink jet printhead 416; 616; 816 on.
- the preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that at least one sheet sensor 164 of the Substratzufufhrehr worn 100 is arranged aligned for detecting a respective leading edge and / or a respective trailing edge of each sheet 02 on the intended transport.
- the preferably designed as a sheet-fed press 01 processing machine 01 is preferably characterized in that the at least one sheet sensor 164 related to the transport direction T after the at least one primary acceleration means 136 and / or after the at least one front stop 137 and / or before the at least one secondary acceleration means 1 19 is arranged.
- the preferred is as
- Sheet-fed printing machine 01 trained processing machine 01 preferably characterized in that the at least one sheet sensor 164 in the transport direction T in the region of the at least one secondary acceleration means 119 and / or after the at least one secondary acceleration means 1 19 is arranged.
- the processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one secondary acceleration means 119 is designed as a suction transport means 1 19 and exclusively below that for the transport of substrate 02, in particular printing material 02 and / or Arc 02 provided transport path is arranged and / or that the at least one primary acceleration means 136 is formed as a suction transport means 136 and exclusively below the for the
- transport path is arranged and / or that the at least one primary acceleration means 136 is disposed below a provided for storing a stack of sheets 02 storage area 134 and / or that the at least one primary acceleration means 136 in particular as a whole by means of at least one vertical drive M104 designated drive M104 is arranged movable at least with respect to a vertical direction V, in particular relative to the primary drive M101; M103.
- This vertical drive M104 is preferably designed as a motor M104, in particular an electric motor M104 and more preferably a position-controlled electric motor M104, and / or is a drive control of this vertical drive M104 with the motor
- Machine control directly or indirectly connected and / or connected via the BUS system with the machine control and / or other drive controls, such as those of the drive of the primary accelerator 136 and / or that of the drive of the secondary accelerator 119 and / or that of the own drive of the machining module 400; 600; 800; 900th
- the adaptation preferably takes place in that the at least one front stop 137 and / or further preferably the at least one rear stop 141 is movable with respect to the transport direction T. and / or is moved and in particular adapted to the length of the sheet 02 can be arranged and / or arranged.
- the position of the backstop 141 results, for example, in relation to the transport direction T, a different position of an initial storage device 134. In particular, to compensate for this is preferably with respect to the transport direction T before the
- Storage device 134 arranged transport 1 11 in his on the
- this transport means 11 for example, a first number of respect to their effective range immutable transport elements or conveyor belts. These are for example designed as conveyor belts. Preferably, this has
- Transport means 11 1 in addition, for example, a second number of variable with respect to their range of action transport elements. These are formed, for example, as a total of at least with respect to the transport direction T displaceable transport elements and / or conveyor belts. By appropriate displacement of the displaceable transport elements in and / or opposite to the transport direction T results in a modified effective length of the entirety with respect to their effective range invariable transport elements and with respect to their range of action T ransportettin.
- the substrate feed device 100 is characterized in that the substrate feed device 100 has at least one transport means 119 arranged downstream of the storage device 134 with respect to the transport direction T, which is designed to be variable in its effective length related to the transport direction T.
- the at least one buffer stack serves in particular to secure a continuous supply of sheet 02.
- corrugated board sheets 02 have relatively large thicknesses, that is, dimensions in the vertical direction V.
- stacks 104 of corrugated cardboard sheets 02 are processed very quickly by singling.
- sheets 02 are preferably conveyed at least partially faster from the feeder stack 104 to the buffer stack than these later and / or other sheets 02 at the same time in the processing machine 01 and in particular in their coating unit 400; 600; 800 promoted and / or coated.
- the buffer stack then decreases during the renewal of the feeder stack 104 and is then replenished, while it is preferably taken in particular by means of at least one metering preferably at a steady pace in particular from below sheet 02 and fed to the investment pile.
- this is arranged at least one with respect to the transport direction T in front of the storage device 134 and in particular after the feeder stack 104 and / or after a provided for the feeder stack 104 main stack carrier
- Transport means 1 11 operable at a particular time at a speed which is different and more preferably at least temporarily higher than one
- a drive M100 of the substrate supply device 100 assigned to this transport means 11 is preferably independent of one
- sheets 02 of the storage device 134 are supplied from above. More preferably, these sheets 02 of the memory device 134 are completely isolated or at least partially supplied separately. Preferably, the bow 02 of the
- Storage device 134 supplied by first being removed from an investor stack 104.
- the sheets 02 are completely or partially separated.
- This separation takes place before feeding into the storage device 134 for example, as already described from below, in particular by means of a lower T ransportstoffs 1 11, lying on the bow 02 as a stack 104 or preferably as a partial stack 106 at least partially run against the obstacle 1 12 and thereby singled depending on the setting of the obstacle 112 or incomplete , so be scaled. For example, this results in an overlapping, in which therefore a respective subsequent sheet 02 is partially arranged on a respective sheet 02 preceding it.
- the sheets 02 are then conveyed by means of the transport means 11 until they enter the storage device 134 at the end thereof. This is preferably done by the sheets 02 fall into a slot of the storage device 134.
- This shaft is formed, for example, by the at least one front stop 137 and / or the at least one rear stop 141 and / or the at least one side stop.
- at least one pressure roller 146 and / or pressure roller 146 is arranged, the sheet 02 presses against that transport means 1 11, which is directly upstream of the shaft.
- the shaft preferably has a downwardly decreasing cross-sectional area. As a result, an alignment of the sheet 02 can be achieved even when the sheet 02 is lowered, in particular with respect to the transport direction T and / or with respect to the transverse direction A.
- the sinking sheets 02 are then in turn to the uppermost sheet 02 of the following storage stack, preferably the Buffer stack is.
- An alternative at least partial separation of the sheets 02 of the stack 104 formed in particular as a feeder stack 104 or a sub-stack 106 from above preferably takes place by each removal of a sheet 02, a main part of the stack 104 with respect to the transport direction T at least substantially unchanged and only optionally continuously or gradually raised.
- the main part of the stack 104 preferably consists of all the sheets 02 of the stack 104, which have not yet been removed.
- the substrate supply device 100 has at least one acting on top of sheet 02 of the stack 104 and / or to act able Removal device 1 14 on.
- the at least one removal device 1 14 is preferably a respective uppermost sheet 02 of the stack 104 individually detectable and / or further transportable.
- the at least one removal device 114 has, for example, at least one handling element 16 which is preferably designed as a lifting element 116 and / or holding element 116, preferably as at least one lifting sucker 116 and / or at least one scavenger 116 and / or at least one transport suction device 16 is trained.
- the at least one lifting element 116 is preferably movable with at least one component in particular in the vertical direction V upwards and counter to the vertical direction V downwards.
- at least one blowing device is arranged, in particular with respect to the transport direction T in front of the removal device 14. This serves, for example, to facilitate the separation of the uppermost sheet 02 from the underlying sheet 02
- Removal device 114 further preferably has at least one upper
- the at least one upper translation element 117 preferably serves at least one movement of the sheet 02 in the space provided
- Transport direction T for example, up to another, in particular expiring transport 1 19 of the substrate supply device 100 or up to another unit 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or up to one
- Transport means 11 which leads to the storage device 134.
- Transport means 1 19 of the substrate feed device 100 preferably ensures further transport of the sheets 02, in particular in the transport direction T and / or up to an exit 121 of the substrate feed device 100.
- Translational element 1 17 arranged and movable together with this
- the removal device 1 14 is then constructed in this regard, for example, as a known sheet separator 114.
- a top sheet 02 is detected, in particular sucked in, then preferably at least slightly raised and at least also moved in the intended transport direction T until it reaches an area of influence of another device which continues its transport.
- Such a sheet separator 114 is distinguished, for example, in that its upper translational element 117 performs an oscillating movement and / or moves at least and preferably once per sheet 02 exactly in the transport direction T and then reverses and per sheet 02 at least and preferably exactly once against Transport direction T moves.
- the at least one upper translational element 1 17 can be operated and / or moved separately from the at least one handling element 116, in particular lifting element 116 and / or holding element 16.
- this is at least one upper translational element 1 17 as a transport means 1 17, in particular suction transport means 1 17 and preferably as a suction belt 117 and / or Saugkastenband 1 17 and / or
- Suction is preferably at least or only directed upwards.
- the removal device 114 is characterized by the fact that the upper
- Translationselement 1 17 performs a circumferential movement.
- the at least one lifting element 16 is then preferably movable so far upward that a sheet 02 held by it comes into contact with the at least one upper translational element 17 or at least reaches such an extent that upon deactivation of the at least one lifting element 1 16 the sheet of the at least one upper translation element 117 is durable.
- the at least one lifting element 116 is movable so far upward that each as
- Contact region of the at least one lifting element 116 provided with the arc 02 region of the at least one lifting element 16 1 16 as high as or higher than each as a contact region of the at least one upper translation element 117 provided with the sheet 02 area of the at least one upper translation element 1 17th is arranged.
- This area provided as the contact area is, for example, the transport area 718 or counter-pressure area 718 of the upper transfer element 117.
- the at least one lifting element 16 is movable so far upward that a sheet 02 held by it comes into contact with the at least one upper translation element 117, in particular with its transport surface 718 or counterpressure surface 718, and of the at least one upper translational element 1 17 at least in the transport direction T is transportable, while still the at least one lifting element 1 16 at least also ensures that the sheet 02 is pulled against the at least one upper transport element 117.
- the at least one lifting element 116 then acts, for example, at least in its raised position as part of the at least one upper translation element 117, more preferably without itself being movable in the transport direction T. In particular, this is preferably the case when the at least one upper translational element 117 is designed as a roller suction system 1 17. Alternatively, however, this is also the case if the at least one upper translational element 17 is designed as a suction belt 117 and / or as a suction box belt 17.
- Substrate feed device 100 preferably has at least one outflowing device
- Transport means 119 the further preferred as suction transport means 119 and / or as at least one transport roller 1 19 or at least one transport gap forming a pair of T ransportwalzen 119 and / or as at least one T ransportspalt forming Pair of transport belts 1 19 is formed.
- the expiring transport means 1 19 serves, for example, to remove the substrate 02 to be processed, in particular printing material 02 and / or sheet 02, from the substrate supply device 100, in particular to an exit 121 of the substrate supply device 100.
- at least one in particular with the outgoing transport means 1 19 cooperating pressure roller 122 and / or pressure roller 122 is arranged.
- the substrate supply device 100 preferably has at least one own drive M100 or motor M100, in particular electric motor M100 or position-controlled electric motor M100, which more preferably at least one transporting means 11 1; 117; 119 of the
- Substrate feed device 100 is driving and / or driven arranged capable.
- the substrate supply device 100 preferably has at least one first further drive M101; M103 or motor M101; M103, in particular electric motor M101; M103 or position-controlled electric motor M101; M103, which further preferably at least one accelerator 119; 136 of the Substratzufufhrehre 100 driving and / or driven is arranged capable.
- the substrate supply device 100 preferably has at least one primary acceleration drive M101 which drives the at least one primary acceleration means 136 and which is preferably designed as an electric motor M101.
- the at least one first further drive M101; M103 also becomes primary drive M101; M103 or primary accelerator drive M101; M103 the
- Substrate feeding device 100 called.
- the first substrate feeding device 100 the first substrate feeding device 100 .
- Substrate feed device 100 preferably has at least one second further own drive M102 or motor M102, in particular electric motor M102 or position-controlled electric motor M102, which more preferably at least one outgoing transport means 19 and / or at least one after the at least one in particular primary
- Acceleration means 136 acting on sheet 02 and / or act capable transport 1 19 or secondary accelerator 1 19 of Substrate feed device 100 is driving and / or driven arranged capable.
- at least the first further drive M101; M103 and / or at least the second further drive M102 independent of further drives M100; M101; M102; M103 of the Substratzucht sensible drivable.
- Substrate feed device 100 is preferably additionally or alternatively characterized in that the section defined by the substrate feed device 100 for transporting substrate 02, in particular printing material 02 and / or sheet 02
- the starting height of the substrate supply device 100 preferably differs from the first standard height by at most 5 cm, more preferably at most 1 cm, and even more preferably by at most 2 mm.
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that it comprises at least one unit 100; 300, the at least one as suction belt 119; 136; 31 1 formed suction transport means 119; 136; 311 for transporting sheets 02 in a transport direction T has. Alternatively or additionally, this has at least one suction belt 1 19; 136; 31 1 at least three with respect to one
- Transverse direction A spaced juxtaposed conveyor belts 1 19; 136; 718; 726, wherein at least one displacement means 158; 159 is arranged, by means of which at least one of the at least three transport belts 1 19; 136; 718; 726 in and / or against the transverse direction A is laterally displaceable, in particular adjustable laterally displaceable and / or relative to at least one particular stationary frame 162nd this at least one aggregate 100; 300.
- the at least three juxtaposed conveyor belts 119; 136; 718; 726 are thus preferably arranged not only offset with respect to the transverse direction A, but of a respective one of these at least three conveyor belts 119; 136; 718; 726 starting in and / or opposite to the transverse direction A is at least another of the at least three conveyor belts 1 19; 136; 718; 726 arranged.
- the transverse direction A between conveyor belts 1 19; 136; 718; 726 each interspaces and in particular
- an end of a respective arch 02 which is related to the transverse direction A, can lie, for example, over a mammal opening 722 and then be pulled at least partially into the mammal opening 722 from the suppression. This would possibly result in a bending of the respective sheet 02, which in turn leads to problems and / or
- Transverse direction A related end only to a very limited extent on a conveyor belt 1 19; 136; 718; 726 is located, for example, two millimeters or less, with this end in a mammalian opening 722 is pulled, thereby laterally in contact with the
- Conveyor belt 1 19; 136; 718; 726 device and thereby with respect to the transverse direction A is moved.
- At least one conveyor belt 1 19; 136; 718; 726 Due to the displaceability of at least one conveyor belt 1 19; 136; 718; 726 can Such situations are avoided or at least mitigated, for example by at least one conveyor belt 119; 136; 718; 726 or preferably several or more preferably all juxtaposed conveyor belts 1 19; 136; 718; 726 are displaced with respect to the transverse direction A and thereby advantageous conditions are created in the region of the ends of the sheet 02 relative to the transverse direction A. In this way, differently wide sheets 02 can be handled optimally.
- the conveyor belts 119; 136; 718; 726 then at least temporarily asymmetric relative to a center of the respective unit 100;
- FIG. 300 are arranged and thereby the sheets 02 are transported centrally regardless of their width.
- An adaptation of the position of the at least one conveyor belt 119; 136; 718; 726 preferably takes place before a start of a machining operation and, for example, once per machining job or only when machining sheet 02 whose width differs from the width of previously processed sheet 02. (In Figs. 25a and 25b, there are exemplified a set of conveyor belts 1 19, 136, 718, 726 in Figs
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one unit 100; 300 at least one in particular during operation of the sheet processing machine 01 arranged stationary
- Side stop 139 and / or these at least one side mark 128 is preferably adjustable in its or on the transverse direction A related position and / or is preferably used for aligning sheet 02 with respect to the transverse direction A. Therefore, he or she is particularly preferred during operation the sheet processing machine 01 stationary.
- the at least one aggregate 100; 300 at least two side stops 139 designed as described and / or at least two side markers 128 designed as described for aligning sheets 02 with respect to the transverse direction A.
- the at least one side stop 139 and / or the at least one side mark 128 are preferably relative to a frame 162 of the at least one aggregate 100; 300 arranged movable and / or adjustable, which is further preferably arranged stationary.
- the at least three juxtaposed conveyor belts 119; 136; 718; 726 are preferably at least partially in the
- the at least one aggregate 100; 300 is preferably designed as at least one sheet feeder unit 100 and / or as at least one plant unit 300. Alternatively, this is at least one aggregate 100; 300 as
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one unit 100; 300 at least one
- Front stop 137 for sheet 02 which preferably less than a maximum length to be processed, the sheet 02 of the at least three conveyor belts 119; 136; 718; 726 is located away.
- the at least one front stop is further preferred at least one stationary during the operation of the sheet processing machine 01 arranged and / or height adjustable front stop 137 for bow 02.
- the at least three conveyor belts 119; 136; 718; 726 relative to the transport direction T at least partially arranged in front of the at least one front stop 137.
- the sheet-processing machine 01 which is preferably designed as a sheet-fed printing press 01, and / or the substrate-feeding device 100 is preferably characterized in that the at least one aggregate 100; 300 at least one with respect to the transverse direction A movable transport assembly 136; 161; 163; 718; 726 and that these at least one transport module 136; 161; 163; 718; 726 at least one of the at least three conveyor belts 119; 136; 718; 726 and at least two of these at least one of the at least three
- the at least one displacement means 158 preferably has at least one manual drive 159 and / or at least one electric drive 159 and / or at least one pneumatic drive 159 and / or at least one hydraulic drive 159.
- a manual drive 159 for example, at least one handwheel is provided.
- the sheet-processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least three conveyor belts 119; 136; 718; 726 arranged invariably relative to each other in their relation to the transverse direction A relative position are and / or have a constant distance.
- the at least three conveyor belts 119; 136; 718; 726 arranged invariably relative to each other in their relation to the transverse direction A relative position are and / or have a constant distance.
- the preferably designed as a sheet-fed press 01 sheet processing machine 01 preferably characterized by the fact that with respect to the transverse direction A movable transport assembly 136; 161; 163; 718; 726 at least one motor M101; M102 for driving the at least three conveyor belts 119; 136; 718; 726 with respect to the transport direction T and / or that with respect to the transverse direction A movable transport assembly 136; 161; 163; 718; 726 at least one motor M101; M102 for driving the at least three conveyor belts 119; 136; 718; 726 of the at least one first suction belt 1 19; 136; 311 with respect to the transport direction T and at least one further motor M101; M102 for driving the at least three conveyor belts 1 19; 136; 718; 726 of the at least one further, with respect to the T ransportraum T behind the first suction belt 119; 136; 31 1 arranged suction bands 1 19; 136; 31 1 with respect to the transport direction
- the transverse direction A is a horizontal direction A and / or orthogonal to the intended transport direction T of the sheet 02 by the at least one unit 100; 300 and preferably by the at least one coating unit 400; 600; 800 oriented.
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one unit 100; 300 at least two as
- Suction belts 119; 136; 311 formed suction transport means 1 19; 136; 311 for transporting sheets 02 in a transport direction T, which are arranged one behind the other with respect to the transport direction T and which, for example, as the first suction belt 1 19; 136; 311 and as another suction belt 1 19; 136; 311 are designated.
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing press 01, is preferably characterized in that it comprises at least two suction belts 119; 136; 31 1 in each case at least three with respect to
- Conveyor belts 119; 136; 718; 726 are thus preferred not only with respect to
- Transverse direction A arranged offset, but of a respective one of these at least three conveyor belts 1 19; 136; 718; 726 starting in and / or counter to the transverse direction A is at least another of the at least three conveyor belts 119; 136; 718;
- the sheet-processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one
- respective displacement means 158; 159 is arranged, by means of which at least one of the at least three at least one of these suction belts 119; 136; 311 associated conveyor belts 119; 136; 718; 726 in and / or against the transverse direction A is laterally displaceable adjustable, in particular laterally displaceable adjustable.
- These at least two suction belts 1 19; 136; 311 are formed in an alternative or additional development of the preferred form as a sheet-fed press 01
- Sheet processing machine 01 preferred with respect to transport movements in the transport direction T independently operable and / or accelerated.
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the quantity of the at least one suction belt 119; 136; 31 1 at least one, for example, the at least one first suction belt 1 19; 136; 311, as the primary acceleration means 136 of the singulator 109 of at least an aggregate 100; 300 is formed and / or that at least one, more preferably at least one other or further suction belt 119; 136; 31 1 from the amount of at least one suction belt 1 19; 136; 31 1 as a secondary acceleration means 1 19 a singulator 109 of the at least one unit 100; 300 is formed.
- the at least one substrate feeding device 100 is preferably characterized in that at least one primary acceleration means 136 is arranged underneath a storage area 134 of the substrate supply device 100 provided for storing a stack of sheets 02 of a substrate 02 and / or that is more preferred at least two and more preferably at least four and / or at least six primary acceleration means 136 are arranged adjacent to one another and below a storage area 134 of the substrate supply means 100 for storing a stack of sheets 02 of a substrate 02 with respect to a transverse direction A.
- the at least one Substratzufufhrehre 100 alternatively or additionally characterized in that the Substratzufufhrehre 100 at least one particular stationary frame 162 and at least one by means of a vertical drive M104 relative to the at least one frame 162 at least with respect to a vertical direction V movable lifting frame 166; 173; 174 has.
- the at least one primary acceleration means 136 is preferably at least partially, and more preferably completely, of the at least one lift frame 166; 173; 174 worn.
- the at least two primary acceleration means 136 is preferably at least partially, and more preferably completely, of the at least one lift frame 166; 173; 174 worn.
- the at least two primary acceleration means 136 is preferably at least partially, and more preferably completely, of the at least one lift frame 166; 173; 174 worn.
- the at least two primary acceleration means 136 is preferably at least partially, and more preferably completely, of the at least one lift frame 166; 173; 174
- Acceleration means 136 are preferably at least partially, and more preferably completely, of the at least one lifting frame 166; 173; 174 worn.
- the at least one primary acceleration means 136 is preferably at least partially and more preferably completely in common with the at least one lifting frame 166; 173; 174 arranged movable with respect to the vertical direction V.
- the at least two primary acceleration means 136 are preferably at least partially, and more preferably completely, of the at least one lifting frame 166; 173; 174 worn arranged.
- the at least two primary acceleration means 136 are preferably at least partially and more preferably completely at the same time together with each other and with the at least one lifting frame 166; 173; 174 and in particular arranged in each case as a whole with respect to the vertical direction V movable.
- the at least one lifting frame 166; 173; 174 preferably arranged movably together with the at least one support frame 161 with respect to the transverse direction A and / or arranged to be movable with respect to the vertical direction V relative to the at least one support frame 161.
- the at least one lifting frame 166; 173; 174 has, for example, at least two side plates 173 and at least one, more preferably at least two lifting bars 174, which are more preferably between the
- At least one lifting frame 166; 173; 174 is preferably one
- this at least one transport surface 718 is preferably movable at least between an upper end position and a lower end position and / or is moved accordingly, in particular independently of movements of the transport surface 718 parallel to the transport path provided for the transport of the sheet 02.
- Acceleration means 136 is preferably the at least one transport surface 718 at least partially and preferably completely above at least one bearing surface of the at least one in particular a shelf of sheet 02 serving
- respective primary acceleration means 136 is preferably at least one transport surface 718 completely below the at least one bearing surface of the at least one in particular the tray of sheet 02 serving spacer 144 is arranged.
- At least one conveyor belt 136 is arranged as the at least one acceleration means 136. At least two primary are preferred.
- Acceleration means 136 arranged and / or a plurality of such conveyor belts 136 with respect to the transverse direction A are arranged side by side.
- at least one cover plate 193, preferably provided with mammal openings 722, is arranged, more preferably between at least two primary acceleration means 136.
- the at least one cover plate 193 is in particular a cover plate 193 of at least one corresponding vacuum chamber 719
- Cover plate 193 is preferably in common with the at least one lifting frame 166; 173; 174 arranged movable. By suppressing sheet 02 are then pulled against the cover plate 193 and / or against the conveyor belts 136 and can be accelerated.
- Assemblies are preferably arranged which more preferably in each case at least one support frame 194 and / or at least one vacuum chamber 719 and / or at least one cover plate 193 and / or at least one, preferably at least two, more preferably at least three, even more preferably at least four rotary body 163; 187 and / or at least one and more preferably at least two and more preferably at least four deflection means 163 and / or at least one drive wheel 187 and / or at least one shaft portion 171 and / or at least one guide 188, in particular sliding guide 188 and / or at least one
- These assemblies are preferably each on the at least one lifting frame 166; 173; 174 attached and / or shared with the at least one lifting frame 166; 173; 174 movably arranged and / or at least partially as part of the at least one lifting frame 166; 173; 174 trained.
- These assemblies are preferably interconnected, at least by their
- Shaft sections 171 in particular via at least partially removable and / or at least partially openable clutches 172 in particular to a common Shaft 169 are connected.
- the at least one substrate feeding device 100 is preferably characterized in that a movement path of the at least one lifting frame 166, which can be effected at least partially or completely vertically by means of the at least one vertical drive M104; 173; 174 as a linear one
- Movement path is formed and / or that the at least one lifting frame 166; 173; 174 is mounted on the frame 162 and / or the support frame 161 of the frame 162 by means of at least one linear bearing 168 designed, for example, as a linear ball bearing 168 and / or as a linear sliding bearing 168.
- the at least one substrate feed device 100 is preferably characterized in that the at least vertical drive M104 has at least one
- the at least one substrate feed device 100 is characterized in that the at least one lifting frame 166; 173; 174 is arranged supported against at least one of the vertical drive M104 drivable component 184, in particular via at least one
- This driven by the vertical drive M104 component 184 is preferably as
- Vertical drive shaft 184 is formed.
- two drive eccentrics 181 are arranged at different locations on the vertical drive shaft 184 with respect to the transverse direction A and in each case connected to a rocker 182 which is connected to the at least one lifting frame 166; 173; 174 are preferably indirectly connected, in particular via respective height adjustment eccentric 176.
- the at least one drive eccentric 181 serves a lifting movement per sheet 02. Therefore, it is advantageous to provide a drive M104 at this point.
- the at least one stands out Substrate feed device 100 preferably characterized in that at least one height adjustment means 167; 176; 177; 178; 179 is arranged, by means of the at least one upper end position of the at least one vertical drive M104 effected at least partially or completely vertical movement path of the at least one primary acceleration means 136 regardless of the at least one
- Vertical drive M104 is adjustable as one of at least three different end positions and / or continuously adjustable.
- the at least one height adjustment means 167; 176; 177; 178; 179 is preferably a relative height position between the at least one lifting frame 166; 173; 174 on the one hand and the at least one vertical drive shaft 184 and / or the at least one rocker 182 on the other adjustable, in particular independent of the position of the at least one vertical drive M104.
- the at least one height adjustment means 167; 176; 177; 178; 179 is, for example, as manually operable and / or as actuatable by a drive height adjustment means 167; 176; 177; 178; 179 trained.
- the Substratzufufhr characterized in that by means of the at least one height adjustment means 167; 176; 177; 178; 179 at least the upper end position of the at least one vertical drive M104 effected at least partially or completely vertical movement path of the at least one primary acceleration means 136 while maintaining the shape of the at least partially or completely vertical movement path independently of the at least one vertical drive M104 is adjustable and / or by means of the at least one height adjustment means 167; 176; 177; 178; 179 and at least one lower end position of the at least one vertical drive M104 effected at least partially or completely vertical movement path of the at least one primary
- Acceleration means 136 is independent of the at least one vertical drive M104 as one of at least three different end positions adjustable and / or continuously adjustable.
- the vertical drive M104 can be operated without reversal of direction and thus run at high speeds.
- the end positions can be set independently of the vertical drive M104.
- the at least one height adjustment means 167; 176; 177; 178; 179 has, for example, at least one height adjustment eccentric 176 and / or at least one height adjustment shaft 177 and / or at least one height adjustment lever 178 and / or at least one
- the at least one deflection means 179 has, for example, at least one thread and at least one strut interacting therewith. Rotation of the strut then preferably causes translation of the strut through the thread. The strut preferably engages the109donestellhebel 178 and their translation causes a pivoting offeatureneinstellhebels 178. This is preferred by the
- the Substratzufufhr worn 100 alternatively or additionally characterized in that the at least one height adjustment means 167; 176; 177; 178; 179 has at least one mecanicneinstellexzenter 176, by means of which a position of at least one Hubangriffsticians 183 relative to the at least one lifting frame 166; 173; 174 is adjustable and / or that this at least one Hubangriffstician 183 caused by the vertical drive M104 movements on the at least one lifting frame 166; 173; 174 are transferable, more preferably, the at least one lifting frame 166; 173; 174 via the at least one Hubangriffstician 183 against at least one driven by the vertical drive M104 component 184 is arranged supported.
- the at least one substrate-feeding device 100 is preferably characterized in that the at least one primary acceleration means 136 is designed as a conveyor belt 136 and / or as a suction conveyor 136 and / or as a suction belt 136 and / or by means of the at least one vertical drive M104 all components of a transport surface 718 of the at least one primary acceleration means 136 together in relation to the vertical
- the at least one substrate feed device 100 is preferably characterized in that a plurality of primary acceleration means 136 with respect to a transverse direction A
- the at least one substrate feeding device 100 is preferably characterized in that the at least two primary acceleration means 136 each have at least one individual height compensation means 186 for individually adapting a relative position of the respective transport surface 718 of the respective one relative to at least the vertical direction V.
- primary acceleration means 136 on the one hand and the at least one lifting frame 166; 173; 174 is assigned on the other hand. This applies in particular independently of the relative position relative to at least the vertical direction V, respectively
- a substrate supply device 100 results, wherein at least two primary acceleration means 136 are arranged side by side and below a storage area 134 of the substrate supply device 100 provided for storing a stack of sheets 02 of a substrate 02, and wherein the substrate supply device 100 is at least one, in particular, stationary Frame 162 and at least one lifting frame 166 movable by means of a vertical drive M104 relative to the at least one frame 162 at least with respect to a vertical direction V; 173; 174, and wherein the at least two primary acceleration means 136 are preferably at least partially, and more preferably completely, of the at least one lift frame 166; 173; 174 supported and preferably at least partially and more preferably completely at the same time together with each other and with the at least one lifting frame 166; 173; 174 are arranged to be movable with respect to the vertical direction
- individual height adjustment means 186 for individual adaptation of a particular relative to at least the vertical direction V relative position of the respective
- Height compensation means 186 results in particular the advantage that in the transverse direction A uneven conveying behavior can be avoided or selectively influenced and / or that wear of individual conveyor belts 136 can be compensated without having to replace these conveyor belts 136.
- the at least one substrate feed device 100 is preferably characterized in that the at least one
- Height compensation means 186 in its relative position, in particular in its relative to the vertical direction V relative position, to the at least one lifting frame 166; 173; 174 is customizable.
- the at least one substrate feed device 100 is preferably characterized in that the respective at least one height compensation device 186 is in each case at least vertical Direction V relative to different positions relative to the lifting frame 166; 173; 174 can be arranged and thereby the relative position of the respective transport surface 718 of the respective primary acceleration means 136 on the one hand and the at least one lifting frame 166; 173; 174 on the other hand is adjustable.
- the at least one substrate feed device 100 is preferably characterized in that the at least two primary acceleration means 136 are designed as conveyor belts 136 and / or suction transport means 136 and / or suction belts 136 and / or as at least one individual Height compensation means 186 at least one respective conveyor belt 136 and / or suction belt 136 in position holding guide 188, in particular slide 188 and / or at least one respective conveyor belt 136 and / or suction belt 136 is held in its position deflecting means 163 is arranged and / or that at least one height compensation means 186 in its particular relative to at least the vertical direction V relative position relative to the at least one lifting frame 166; 173; 174 is customizable.
- At least one guide 188 in particular sliding guide 188 at least in the vertical direction V relative to the lifting frame 166 in different positions; 173; 174 can be arranged and / or this at least one deflection means 163 at least in the vertical direction V relative to the lift frame 166 in different positions relative; 173; 174 can be arranged.
- Such a guide 188 or sliding guide 188 serves, for example, to hold the respective conveyor belt 136 and / or suction belt 136 and / or its transport surface 718 in a defined position, even if it is itself moved.
- a respective such guide 188 is preferably formed as a sliding guide 188.
- the respective guide 188 alternatively or additionally has at least one or more guide rollers 188. At least one is preferred in each case
- Austiciansexzenter 189 as part of the respective height compensation means 186, the at least one guide 188, in particular slide 188 with the at least one lifting frame 166; 173; 174 arranged connecting.
- at least one Balancing eccentric 189 as part of the respective height compensation means 186, the at least one deflection means 163 with the at least one lifting frame 166; 173; 174 arranged connecting.
- at least one fixing device 196 is arranged to move the respective height compensation means 186 in different positions relative to the at least one lifting frame 166; 173; 174 to be able to fix.
- This at least one fixing device 196 has, for example, at least one slot.
- the at least one substrate feed device 100 is preferably characterized in that each of the at least two primary acceleration means 136 has at least one respective rotational body 163; 187, each by means of at least one primary accelerator drive M101; M103 is driven and / or driven.
- Each of the at least two primary acceleration means 136 preferably has at least one respective rotational body 163; 187, which is configured and arranged in each case for setting a voltage of the respective transport belt 136 and / or suction belt 136.
- at least one respective clamping eccentric is arranged for this purpose.
- each conveyor belt 136 or suction belt 136 is in each case designed as a drive wheel 187 rotational body 163; 187 and one of them different, for setting a voltage of the respective conveyor belt 136 and / or Saugbands 136 trained rotational body 163; 187 assigned.
- a respective axis of rotation of said respective driven rotary body 163; 187 is preferably relative to the at least one lifting frame 166; 173; 174 immutable and / or stationary.
- the at least one substrate feed device 100 is preferably characterized in that each of the at least two primary acceleration means 136 has at least one rotation body 163; 187, each of which has at least two primary acceleration means 136 common shaft 169 is driven.
- the common shaft 169 preferably has at least two shaft sections 171, which with respect to a transverse direction A
- the common shaft 169 further preferably has at least three, more preferably at least four and even more preferably at least five shaft sections 171, which are arranged one behind the other with respect to a transverse direction A.
- directly adjacent shaft sections 171 of the common shaft 169 are preferably each connected via an at least partially removable and / or at least partially openable coupling 172.
- at least two, more preferably at least three, and even more preferably at least four, such couplings 172 are each disposed between respective directly adjacent shaft sections 171 of the common shaft 169 and / or can be arranged.
- a directly adjacent shaft portions 171 of the common shaft 169 are each connected via one of at least two and / or at least four at least partially removable and / or at least partially openable couplings 172.
- a substrate supply device 100 is preferred, wherein at least two primary acceleration means 136 with respect to a
- Substrate feed 100 are arranged and wherein the Substratatzuschreib sensible 100 at least one particular stationary frame 162 and at least one by means of a vertical drive M104 relative to the at least one frame 162 at least with respect to a vertical direction V movable lifting frame 166; 173; 174, and wherein the at least two primary acceleration means 136 are preferably at least partially, and more preferably completely, of the at least one lift frame 166; 173; 174 supported and preferably at least partially and more preferably completely at the same time together with each other and with the at least one lifting frame 166; 173; 174 and in particular each are arranged as a whole movable with respect to the vertical direction V and wherein each of the at least two primary acceleration means 136 at least one rotational body 163; 187, in each case via a shaft 169 common to these at least two primary acceleration means 136
- common shaft 169 at least two, more preferably at least three, even more preferably at least four and still more preferably at least five shaft portions 171 which are arranged one behind the other with respect to a transverse direction A and wherein with respect to the transverse direction A directly adjacent shaft portions 171 of common shaft 169 are each connected via an at least partially removable and / or at least partially openable coupling 172 are arranged.
- conveyor belts 136 and / or suction belts 136 and / or assemblies can be assembled and / or disassembled and / or replaced in a particularly simple manner, in particular without having to disassemble many components of the substrate supply device 100 unnecessarily.
- Such assemblies have, for example, at least one support frame 194 and / or at least one vacuum chamber 719 and / or at least one cover plate 193 and / or at least one, preferably at least two, more preferably at least three, even more preferably at least four rotational body 163; 187 and / or at least one and more preferably at least two and more preferably at least four deflection means 163 and / or at least one drive wheel 187 and / or at least one shaft section 171 and / or at least one guide 188,
- the respective rotational body 163; 187 in each case via a shaft 169 common to these at least two primary acceleration means 136
- Substrate feed device 100 is therefore preferably characterized in that the at least two primary acceleration means 136 are designed as conveyor belts 136 and / or as suction transport means 136 and / or as suction belts 136 and the respective rotational bodies 163 are designed as deflection means 163.
- the at least one substrate feed device 100 is preferably characterized in that, for at least partially removing and / or at least partially opening the respective coupling 172, at least one component of the respective coupling 172 is movable in at least one direction, which is orthogonal is oriented to a rotational axis of the shaft 169 and more preferably is exclusively movable in at least one direction, which is oriented orthogonal to a rotational axis of the shaft 169.
- the at least one substrate feed device 100 is preferably characterized in that the respective coupling 172, while maintaining the respective position of the rotational body 163 directly adjacent to this coupling 172;
- Substrate feed device 100 preferably comprises at least partially removing and / or at least partially opening the respective coupling 172 directly adjacent shaft sections 171 separated from each other and / or decoupled and more preferably in particular so separated and / or decoupled that one particular zero different distance between these respective directly adjacent shaft sections 171 arises.
- the at least one substrate supply device 100 is preferably characterized in that by at least partially removing and / or at least partially opening a plurality of couplings 172, the common shaft 169 into several and / or at least three and / or at least four and / or at least five separate
- each of the at least two primary acceleration means 136 has at least one respective rotational body 163; 187, in particular deflection means 163 and / or drive wheel 187, each by means of at least one primary acceleration drive M101; M103 is driven and / or driven and / or that the common shaft 169 by means of at least one primary accelerator drive M101; M103 is driven and / or driven.
- the at least one substrate feed device 100 is preferably characterized in that the at least one primary acceleration drive M101; M103 rigid relative to the frame 162 and / or relative to that of the lifting frame 166; 173; 174 different support frame 161 is arranged and / or at least via at least one propeller shaft 91 and / or via at least one torque transmission means 192 is connected to the common shaft 169.
- a torque transmission means 192 is designed, for example, as a belt 192 and / or as a chain 192 and / or as a gear 192.
- the sheets 02 are fed by the Substratzufufhr worn 100 directly to an investment device 300, which, for example, also part of
- Substrate feed device 100 may be.
- the sheets 02 are initially fed to at least one preparation device 200.
- At least one preparation device 200 is based on the intended transport path for a substrate supply device 100 and / or at least one coating unit 400; 600; 800 arranged.
- Preparation device 200 preferably has at least one activation device 201.
- the at least one activation device 201 is, for example, as a calender 201 and / or as a moistening device 201 and / or as a discharge device 201 and / or as an inerting device 201 and / or as a cleaning device 201 and / or as Deburring device 201 and / or designed as an inspection device 201.
- a cleaning device 201 is designed, for example, as a suction device 201 and / or as a blowing device 201 and / or as a stripping device 201 and / or preferably serves to remove pieces of paper and / or dust.
- a cleaning device 201 is designed, for example, as a suction device 201 and / or as a blowing device 201 and / or as a stripping device 201 and / or preferably serves to remove pieces of paper and / or dust.
- Inspection device 201 has, for example, at least one and preferably a plurality of, in particular at least two, in particular optical sensors, which are designed for example as a camera and / or are preferably arranged to be mechanically movable, in particular in the transverse direction A.
- optical sensors which are designed for example as a camera and / or are preferably arranged to be mechanically movable, in particular in the transverse direction A.
- the Einwirk gear 201 is, for example, within another unit 100; 300; 400; 500; 550; 600; 700; 800; 900; 1000 or module 100; 300; 400; 500; 550; 600; 700; 800; 900; 1000 arranged, in particular aligned on the intended transport and / or acting and / or act capable.
- the preparation device 200 is preferably designed as an independent unit 200 and more preferably module 200.
- the preparation device 200 preferably has at least one transport means 211, which is further preferably designed as a suction transport means 211.
- the above in the preceding and hereinafter described on suction transport means preferably applies accordingly.
- the preparation device 200 preferably has at least one own drive M200 or motor M200, in particular electric motor M200 or position-controlled electric motor M200, which is more preferably arranged capable of driving and / or driving at least one transport means 21 1.
- the own drive M200 or motor M200 in particular electric motor M200 or position-controlled electric motor M200, which is more preferably arranged capable of driving and / or driving at least one transport means 21 1.
- Preparation device 200 at least one pressure roller 202 or pressure roller 202, by means of the sheet 02 against the at least one transport means 21 1 can be acted upon by a force.
- the preparation device 200 preferably has at least one transfer means 03 for sheet 02.
- the by the preparation device 200th Specified portion of the transport of substrate 02, in particular substrate 02 and / or sheet 02 provided transport path is preferably substantially flat and more preferably completely flat and is preferably formed substantially and more preferably exclusively horizontally.
- the preferably designed as an aggregate 200 and / or 200 module preparation device 200 is characterized alternatively or additionally characterized in that the specified by the preparation device 200 portion of the transport of substrate 02, in particular substrate 02 and / or sheet 02 provided on a transport path Input level of the preparation device 200 begins and / or ends at an initial level of the preparation device 200.
- the preparation device 200 is characterized in that this input height of the
- sheets 02 are stepwise accelerated by means of the substrate feed device 100 and / or at least one abutment device 300. For that are
- At least one primary acceleration means 136 and at least one secondary acceleration means 19 are arranged.
- the primary acceleration means 136 preferably accelerates the sheets 02 to a first speed v1 and the secondary acceleration means 119 preferably accelerates the sheets 02 later to a second speed v2, for example the second
- the second accelerator 1 19 is in one embodiment to the second
- This minimum speed is preferably equal to the first speed v1.
- this minimum speed is greater than the first speed v1.
- the sheets 02 are then accelerated at a transfer between the primary accelerator 136 and the secondary accelerator 119 by a relative speed between the secondary accelerator 1 19 on the one hand and bow 02 on the other hand and by appropriate friction, at least until they are moved at the second speed v2.
- the sheets 02 are thus pulled along and thereby accelerated.
- the secondary accelerating means 1 19 is operated constantly at the second speed v 2 and the acceleration of the arc 02 to the second speed v 2 is completely as described via the relative speed and corresponding friction.
- further acceleration means are arranged.
- a processing machine 01 designed in particular as a sheet-fed printing machine 01 is characterized in that the sheet-fed printing machine 01 has at least two modules 100; 600 trained units 100; 600 and that more preferably the at least two modules 100; 600 each have at least one own drive M100; M101; M102; M103; M600; M601 have.
- the sheet-fed printing machine 01 has at least two modules 100; 600 trained units 100; 600 and that more preferably the at least two modules 100; 600 each have at least one own drive M100; M101; M102; M103; M600; M601 have.
- the sheet-fed printing machine 01 has at least two modules 100; 600 trained units 100; 600 and that more preferably the at least two modules 100; 600 each have at least one own drive M100; M101; M102; M103; M600; M601 have.
- the sheet-fed printing machine 01 has at least two modules 100; 600 trained units 100; 600 and that more preferably the at least two modules 100; 600 each have at least one own drive M100; M101;
- Sheet-fed printing machine 01 alternatively or additionally characterized in that at least one of the at least two modules 600 as non-impact coating module 400; 600; 800 is trained.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that at least one of the at least two modules 500 is designed as a drying module 500.
- the processing machine 01 which is designed in particular as a sheet-fed printing press 01, is characterized alternatively or additionally in that at least one and in particular at least one further of the at least two modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 has at least one drying device 500 or drying device 506.
- Drying device 506 preferably has at least one energy delivery device 501; 502; 503 on. This drying device 500 or drying device 506 preferably has at least one designed as a hot air source 502
- at least one energy emitting device 501 designed as an infrared radiation source 501 is arranged.
- at least one is designed as a hot air source 502
- Energy delivery device 502 arranged.
- at least one energy emitting device 503 designed as a UV radiation source 503 is arranged.
- at least one energy emitting device designed as an electron beam source is arranged.
- the processing machine 01 which is designed in particular as a sheet-fed printing press 01, is characterized alternatively or additionally in that at least one of the at least two modules 400; 600; 800 at least one coating module 400; 800 is arranged as
- the processing machine 01 which is designed in particular as a sheet-fed printing press 01, is characterized alternatively or additionally by the fact that at least one further module 400 is formed as a primer module 400
- Coating module 400 is arranged, which has its own drying device 500 or drying device 506 and this drying device 500 or Drying device 506 at least one formed as a hot air source 502
- At least one further module 800 at least one designed as a paint module 800
- Coating module 800 is arranged, which has its own drying device 500 or drying device 506 and this drying device 500 or drying device 506 at least one formed as a hot air source 502
- Energy delivery device 501; 502; 503 has.
- the at least one further of the at least two modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, for example, the primer module 400 preferably has a frame 427; 627; 827 on.
- this frame 427; 627; 827 directly or indirectly whose drying device 500 or drying device 506 is rigidly connected.
- this frame 427; 627; 827 at least one
- An area of action of the drying device 500 or drying device 506 of the at least one further of the at least two modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, for example of the primer module 400, with regard to the transport path provided for the transport of substrate 02, in particular printing material 02 and / or sheet 02, is preferably after an application point 418 of the at least one further of the at least two modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, for example the Priming module 400 arranged.
- the primer module 400 provided transport path preferably after a counter-pressure means 408 this at least one further of the at least two modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, for example, this primer 400 arranged.
- Suction conveyor 417 is preferably by means of a drive M400; M401; M600; M601; M800; M801 of the at least one further of the at least two modules 100; 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, for example, the primer 400 drivable.
- a coating module 400 designed as a primer module 400 and / or as a printing module 600 and / or as a coating module 800; 600; 800
- the coating module 400 which is designed as a primer module 400 and / or as a printing module 600 and / or as a coating module 800, is preferred.
- 600; 800 preferably a frame 427; 627; 827, to which directly or indirectly its drying device 500 or drying device 506 is rigidly connected and with which more preferably at least one counter-pressure means 408; 608; 808 of the as
- Primer module 400 and / or coating module 400 designed as a printing module 600 and / or as a coating module 800; 600; 800 is arranged directly or indirectly connected.
- the drying device 500 or drying device 506 of the primer module 400 and / or as a pressure module 600 and / or as Coating module 800 formed coating module 400; 600; 800 only via the frame 427 of this coating module 400 designed as a primer module 400 and / or as a printing module 600 and / or as a coating module 800; 600; 800 and / or mechanically flexible connections to a floor or a footprint below the sheet-fed press 01 connected.
- An area of action of the drying device 500 or drying device 506 of the coating module 400 designed as a primer module 400 and / or as a printing module 600 and / or as a coating module 800; 600; 800 is with respect to the transport of substrate 02, in particular
- Substrate 02 and / or sheet 02 provided transport path preferably after an application point 418; 618; 818 of the coating module 400 designed as a primer module 400 and / or as a printing module 600 and / or as a coating module 800; 600; 800 arranged.
- Transport path preferably for a counter-pressure means 408; 608; 808 this as
- Primer module 400 and / or coating module 400 designed as a printing module 600 and / or as a coating module 800; 600; 800 arranged.
- Drying device 506 of the coating module 400 designed as a primer module 400 and / or as a printing module 600 and / or as a coating module 800; 600; 800 provided transport means 417; 617; 817, in particular suction transport means 417; 617; 817, is preferably by means of a drive M400; M401; M600; M601; M800; M801 of the coating module 400 formed as a primer module 400 and / or as a printing module 600 and / or as a coating module 800; 600; 800 Primer 400 drivable.
- Under a rigid connection is a connection to understand that prevents uncontrolled relative movements. It is nevertheless provided, for example, that by means of at least one mechanism and / or at least one drive, a targeted relative movement can be achieved, for example, around the
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that at least one of the at least two modules 100 is designed as a substrate supply device 100 and / or that at least one of the at least two modules 600 is designed as a printing module 600.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that the substrate-feeding device 100 has at least one primary acceleration means 136 with primary drive M101; M103 or primary acceleration drive M101; M103 of the substrate feed device 100 and at least one secondary acceleration means 119 with secondary drive M102 or secondary acceleration drive M102 arranged along a transport path provided for the transport of substrate 02, in particular printing material 02 and / or sheet 02, after the at least one primary acceleration means 136
- Acceleration means 136 is arranged below a storage area 134 provided for storing a stack of sheets 02. Such a stack comprises more than one sheet 02.
- the primary drive M101; M103 of the at least one primary accelerator 134 of the substrate feeder 100 is also called primary accelerator drive M101; M103 of the substrate feeder 100 called.
- the secondary drive M102 of the at least one secondary acceleration means 1 19 of the substrate feed device 100 is also called secondary acceleration drive M102 of the substrate feed device 100.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that the at least one printing module 600 is one of the primary drive M101; M103 of the substrate feeder 100 and the secondary drive M102 of
- Substrate feeder 100 different drive M600 associated with a transport of sheet 02.
- primary drive M101; M103 and secondary drive M102 is the independent movement of the acceleration means 119; 136 and thus a graded acceleration as described above possible.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that the sheet-fed printing machine 01 at least three as modules 100; 200; 300; 400;
- 400; 500; 550; 600; 700; 800; 900; 1000 each at least one own drive M100; M101; M102; M103; M200; M300; M400; M401; M500; M550; M600; M601; M700; M800; M801; M900; Have M1000.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that the sheet-fed printing press 01 has a plurality of aggregates 600 formed as printing modules 600, which each have at least one own drive M600.
- the sheet-fed printing machine 01 is characterized alternatively or additionally by the fact that the at least one printing module 600 is formed as a coating agent from above applying pressure module 600.
- the at least one printing module 600 is formed as a coating agent from above applying pressure module 600.
- Sheet-fed printing machine 01 alternatively or additionally characterized in that the at least one printing module 600 as non-impact coating unit 600 and / or as
- Ink jet printing unit 600 is formed.
- the nozzles are arranged.
- Sheet-fed printing machine 01 alternatively or additionally characterized in that by means of the at least one primary accelerating means 136 arc 02 to a first
- Speed v1 can be accelerated and / or accelerated and that by means of the at least one secondary accelerating means 1 19 sheet 02 in particular can be accelerated and / or accelerated from the first speed v1 to a second speed v2 which is greater than the first speed vl or even to a third speed v3, which is still greater than the second
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that a drive control of the primary drive M101; M103 from one
- Drive control of the secondary drive M102 is different and further preferred that a drive control of the drive M600 of the pressure module 600 of the
- Sheet-fed printing machine 01 alternatively or additionally characterized in that the second
- Speed v2 is a printing speed for transporting the sheets 02 through which at least one printing unit 600 is.
- the speed v2 is a printing speed for transporting the sheets 02 through which at least one printing unit 600 is.
- Sheet-fed printing machine 01 alternatively or additionally characterized in that a
- Drive control of the drive M600 of the printing module 600 are connected by circuitry with a machine control of the sheet printing machine 01.
- the sheet-fed printing machine 01 is characterized alternatively or additionally by the fact that the at least one primary acceleration means 136 is designed as at least one acceleration means 136 acting on a respectively lowermost sheet 02 of a stack.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that as the at least one primary acceleration means 136 more
- Subsets of primary acceleration means 136 are arranged, which are operable at least at times with sub-quantity to subset different arc speeds and / or the respective at least one only this respective subset of Acceleration means 136 associated with each primary drive M101; M103 have.
- Each subset may have a primary acceleration means 136 or a plurality of primary acceleration means 136. (Examples can be seen in FIGS. 14a and 16b.)
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that a plurality of spacers 144.1; 144.2 are arranged independently of one another, at least with regard to the vertical direction V, for example at least one first spacer 144.1 and at least one second spacer 144.2.
- the at least one first spacer 144.1 and / or the at least one second spacer 144.2 is designed as at least one support surface provided with recesses and / or the primary acceleration means 136 protrude at least partially and / or at least temporarily through the recesses upwards. (An example of this can be seen in Figure 14b.)
- the sheet-fed printing machine 01 is characterized alternatively or additionally by the fact that the drives M101; M102; M103, the acceleration means 1 19 provided for the movement of the sheets 02 along their intended transport path; 136 of the substrate supply device 100 are operable independently of such drives, which at least on the vertical relative movement of the primary acceleration means 136 on the one hand and the at least one spacer 144; 144.1; 144.2 or the
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that the at least one primary acceleration means 136 as at least one transport roller 136 and / or at least one conveyor belt 136 and / or as at least a suction transport means 136 and / or as at least one suction belt 136 and / or at least one Saugkastenband 136 and / or as at least one Rollensaugsystem 136 and / or as at least one suction pad 136 and / or at least one suction roller 136 is formed.
- the at least one primary acceleration means 136 as at least one transport roller 136 and / or at least one conveyor belt 136 and / or as at least a suction transport means 136 and / or as at least one suction belt 136 and / or at least one Saugkastenband 136 and / or as at least one Rollensaugsystem 136 and / or as at least one suction pad 136 and / or at least one suction roller 136 is formed.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that the at least one secondary acceleration means 1 19 as at least one outgoing transport means 1 19 of the substrate supply means 100 and / or at least one T ransportwalze 119 and / or as at least one transport gap forming pair of Transport rollers 119 and / or as at least one suction transport means 1 19 and / or as at least one a transport gap forming pair of conveyor belts 119 is formed.
- the at least one pair of conveyor belts 19 forming a transport gap a risk can be reduced that the sheets 02 are pressed together too much and / or deformed. (Examples are shown in Fig. 16a and Fig. 16b.) This causes in particular in
- At least one interchangeable assembly is arranged, which has the at least one secondary acceleration means 1 19 Then, in a simple manner and as required, for example, a pair of transport rollers 119 forming at least one transport gap may be exchanged for at least one pair of transport belts 119 forming a transport gap.
- the sheet-fed printing machine 01 is alternatively or additionally characterized in that at least one additional device 147 for detecting erroneously transported and / or faulty sheets 02 and / or at least one additional device 147 for sorting out bow 02 and / or at least one
- Additional device 147 is arranged for holding and / or pushing back of sheet 02. (This is illustrated by way of example in FIG. 15.) These at least one
- Additional device 147 is preferably between the at least one primary acceleration means 136 on the one hand and the at least with respect to the transport path provided for the transport of substrate 02, in particular substrate 02 and / or sheet 02 a secondary accelerator 119 arranged on the other hand. If the auxiliary device 147 is designed as an additional device 147 for detecting erroneously transported and / or faulty sheet 02, it serves, for example, to identify double sheets and / or to determine sheet 02, which have protruding components. Such protruding components could
- An additional device 147 for sorting out sheets 02 has, for example, a suction device and / or a transport switch.
- a sorting device 147 has at least one compression means 148 for sorting out; 149, by means of the sheet 02 are compressible in particular with respect to their height and / or is formed as a compression device 147.
- the sheet-processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that it is provided along the path for the transport of sheets 02
- Transport path is arranged at least one designed in particular as a supernatant sensor 153 sensor 153 for detecting at least one spatial extent of sheet 02.
- the at least one overhang sensor 153 is designed, for example, as an optical sensor and / or as a light barrier and / or as an ultrasonic sensor and / or as a capacitive sensor and / or as an inductive sensor and / or as a magnetic sensor.
- the at least one projection sensor 153 preferably detects a height of the sheet 02 horizontally transported below it. If a part of the sheet 02, in particular a part of the front end of the sheet 02, is too far up, becomes this is detected by the at least one overhang sensor 153.
- the sheet processing machine 01 preferably has at least one non-impact coating unit 400; 600; 800 and / or at least one printhead 416; 616; 816 or ink jet printhead 416; 616; 816 on. Therefore, a compression device 147 is preferably arranged, in particular an additional device 147 designed as a compression device 147
- Compressor 147 is for example in the range of
- Coating unit 400; 600; 800 arranged to avoid that between the compression device 147 and the printheads 416; 616; 816 areas lie where the sheet 02 is negatively changed in shape.
- At least one compression device 147 is arranged in particular along the transport path provided for the transport of sheets 02 according to a detection region of this at least one projection sensor 153, which further preferably has at least one first compression element 148 and at least one second compression element 148
- Compression body 149 and even more preferably at least one force element 151 has.
- the at least one first compression body 148 is preferably movable, in particular at least with respect to the vertical direction V and / or to the at least one second compression body 149.
- the at least one second compression body 149 is preferably movable, in particular at least with respect to the vertical direction V and / or to the at least one second compression body 149.
- Compression body 149 is preferably formed as a counterpressure body 149 and more preferably fixed to any rotational movements.
- the at least one first compression body 148 is designed as a roller 148 arranged in particular rotatable and / or the at least one second compression body 149 is designed as a roller 149 arranged in particular rotatable.
- a respective one Rotation direction of this respective roller 148; 149 is preferably oriented so that an area next to the sheet 02 moves parallel to the sheet 02, in particular not in antiparallel.
- the at least one second compression body 149 can also serve a component that carries other functions, for example at least one conveyor belt 718; 726 and / or at least one vacuum chamber 719.
- An axis of rotation of the at least one first compression body 148 is preferably displaceable.
- the sheet processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one first compression body 148 is movably arranged by means of the at least one force element 151 from a passage layer onto the at least one second compression body 149 into a compression position , wherein more preferably arranged in the passage layer first
- Compression element 148 the at least one force element 151 is biased.
- Compressive arc 02 can be achieved.
- Compressing means 147 at least one retainer 152, which is switchable at least between a retaining state and a release state and in the retaining state, a movement of the at least one first
- Compression body 148 is arranged preventing from its passage position in its compression position. As a result, the bias is maintained.
- a bias is to be understood in particular as a state in which the corresponding body endeavors to change its shape automatically in order to reach a state of lower energy.
- the at least one force element 151 has at least one spring and / or at least one magnet and / or at least one electromagnet and / or at least one spring plate.
- the at least one retaining device 152 has at least one trigger drive 157, which is further preferred as a pneumatic cylinder and / or as a hydraulic cylinder and / or as
- the at least a retaining device 152 at least one stop body 156, which is further preferably by means of the at least one trigger drive 157 movable. Then, by activating the trigger drive 157, the stopper body 156 can be moved and the path of the at least one first compression body 148 out of its
- the sheet-processing machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the sheet-processing machine 01 has at least one transport belt 718; 726, which is provided with at least one transport section of its circulation path parallel to a transport direction T along a subregion of the substrate 02, in particular substrate 02 and / or sheet 02, for transport
- Transport path extends and that the at least one conveyor belt 718; 726 is at least partially disposed between the at least one first compression body 148 on the one hand and the at least one second compression body 149 on the other hand.
- bow 02 is preferably a contact between the at least one conveyor belt 718; 726 on the one hand and the at least one second compression body 149 on the other.
- the transport section of the at least one conveyor belt 718; 726 at least one coating station 409; 609; 809 at least one coating unit 400; 600; 800 of the sheet printing machine 01 arranged.
- the detection range of this at least one projection sensor 153 is preferably along the transport section of the at least one conveyor belt 718; 726 arranged.
- a compression region 154 is preferably that region which is separated from the at least one first and the at least one second compression body 148; 149 is fixed, in particular that spatial region in which a smallest distance between the at least one first compression body 148 on the one hand and the second compression body 149 and / or the at least one conveyor belt 718; 726, on the other hand, is smaller than the thickness of the sheets 02 to be transported.
- Coating site 409; 609; 809 is preferably at most 200 cm, more preferably at most 100 cm, even more preferably at most 50 cm, even more preferably at most 20 cm, and still more preferably at most 10 cm.
- the sheet-forming machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that at least one biasing drive is provided by means of which the at least one first compression body 148 moves away from the compression position, in particular away from the at least one second compression body 149, into the passageway is movable. Then, the sheet processing machine 01 need not necessarily be stopped when a sheet 02 has been compressed, but may continue to run after re-tensioning the compression means 147,
- the sheet processing machine 01 preferably has at least one transfer switch and / or discharge device and / or Makulaturweiche for sheet 02, which is arranged with respect to the intended for the transport of the sheet 02 transport path to the at least one compression device 147. Then, a compressed sheet 02 can be disposed of in a simple manner.
- the sheet-forming machine 01 which is preferably designed as a sheet-fed printing press 01, is preferably characterized in that the at least one overhang sensor 153 is connected directly or indirectly to the at least one retaining device 152 and / or that the at least one overhang sensor 153 is associated with the circuit a machine control of the sheet processing machine 01 is connected, with which also the at least one retaining device 152 is connected in terms of circuitry.
- This allows an automated backup by means of the compression device 147.
- FIG. 21a schematically shows a compression device 147 with compression body 148 in a passageway position and in FIG. 21b a compression device 147 with
- Compression body 148 shown in compression position.
- An auxiliary device 147 for holding and / or pushing back of sheet 02 has, for example, a suction device and / or a pushing means.
- a suction device for example, holds a corresponding sheet 02 and thereby prevents it from being transported further and causing damage.
- a pushing device is, for example, as a roller and / or roller and / or brush trained and arranged rotating and / or rotatable. The direction of rotation is chosen such that a force imparted by the pusher, for example by friction, is oriented counter to the transport direction of the sheet 02 and / or counter to its intended transport path.
- the pusher for example by friction
- Processing machine 01 stopped when a faulty transported sheet 02 was detected and / or held and / or restrained by the attachment 147 for holding and / or pushing back of sheet 02.
- the sheet-forming machine 01 which is preferably designed as a sheet-fed printing machine 01, is preferably characterized in that the at least one primary acceleration means 136 is at the same time designed as a sheet alignment means for alignment with respect to the transverse direction A and / or a pivot position and / or at least a secondary one
- Acceleration means 1 19 at the same time as Bogenausrichtstoff for alignment with respect to the transverse direction A and / or a pivotal position is formed.
- the respective acceleration means 119; 134 For a change in the pivot position, the respective acceleration means 119; 134
- the respective acceleration means 119; 134 for example, at least partially movable in and / or against the transverse direction A, in particular while it is in contact with a sheet 02.
- the sheet-fed printing machine 01 is characterized alternatively or additionally by the fact that under a module 100; 600 a respective unit 100; 600 or an assembly of several aggregates 100; 600 is understood, the at least one separate controllable and / or controllable drive M100; M101; M102; M103; M600 and / or at least one transfer means 03 for sheet 02 and / or at least one without deviation or with a deviation of at most 5 cm on one for several modules 100; 600 has the same first standard height beginning and / or ending portion of a transport path for sheet 02 provided for transport path and / or as independently functional module 100; 600 and / or formed in each case and / or individually assembled machine unit or functional assembly is formed.
- the sheets 02 are preferably accelerated individually in a transport direction T, in particular to a transfer speed vu and / or to a catch-up speed va.
- the at least one primary acceleration means 136 is or will be preferred by the position-controlled electric motor M101; M103 trained primary drive M101; M103 powered.
- the at least partially separated sheets 02 are respectively transferred, in particular, from the at least one first acceleration means 136 to the at least one secondary acceleration means 1 19 arranged behind the at least one front stop 137, in particular with respect to the transport direction T, preferably by a position-controlled electric motor M102
- trained secondary drive M102 is driven or will.
- Transfer speed vu is accelerated and the at least partially separated sheets 02 are each transferred from the at least one first acceleration means 136 to the at least one secondary acceleration means 1 19 and thereby transported at the transfer speed vu.
- the sheets 02 are provided in particular along the for a transport of the sheet 02
- Transport path from the Substratatzuschreib raised 100 to at least one further module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the Sheet processing machine 01 transports, more preferably, the sheet 02 respectively thereafter by means of at least one drive M200; M300; M400; M500; M550; M600; M700; M800; M900; 1000 of the at least one further module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 with a processing speed vb in particular individually by the respective further module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 transports and thereby in this respective other module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 edited.
- the at least one primary acceleration means 136 as a whole by means of the at least one vertical drive M104 at least with respect to a vertical direction V relative to the primary drive M101; M103 moves to make or finish contact with a respective sheet 02. Then, the respective sheet 02 can be further accelerated by means of the at least one secondary accelerating means 1 19, while the at least one primary accelerating means 136 is already decelerated again or stands still. Due to the relative movement of the primary drive M101; M103 be spared.
- a front stack boundary plane SV is preferably defined by a plurality of in
- the at least one primary acceleration means 136 is preferably arranged at least partially and more preferably completely in front of the front stack boundary plane SV.
- the at least one secondary accelerator 1 19 is preferably at least partially, and more preferably completely after the front
- Stack boundary level SV arranged.
- a transport speed of the sheet 02 is referred to, which is greater than that
- each transport speed the arc 02 which is greater than the processing speed vb, referred to as catch-up speed va.
- the method is characterized by the fact that the sheets are transported at least one time by means of at least one primary accelerator 136 and / or by means of the at least one secondary accelerator 119 with a maximum Aufholen für va by at least 10% and more preferably at least 20% and more preferably at least 30%, and even more preferably at least 50% greater than that
- the method is preferably characterized by the fact that the sheets 02 are arranged to intersect the front stack boundary plane SV at least at one point in time during their respective transport and at the same time are transported at a catch-up speed va, in particular along that for the transport of Sheet 02 provided transport path T.
- each subsequent sheet 02 of the stack faster with the at least one primary acceleration means 136 come into contact and be accelerated earlier. In this way, gaps between successive sheets 02 caused by the necessary acceleration to the processing speed can be closed at least partially and more preferably up to a predetermined value.
- the method is preferably characterized in that the at least one primary drive M101;
- the at least one secondary drive M102 are operated so coordinated that a gap between a preceding sheet 02 and a trailing arc 02 is reduced and / or adjusted to a value within a predetermined tolerance range by a target value.
- a target value Preferably, at most one sheet 02 at a time, the front stack boundary plane SV cutting arranged. This will make scaly transports in the area of the front
- the method is preferably characterized in that the remaining stack 104 of not yet separated sheet 02 is retained with respect to the transport direction T by means of the at least one front stop 137. More preferably, the front stop 137 is the front
- the method is preferably characterized in that the sheets 02 are each at least one time each with at least one component vertically above or preferably vertically below the at least one front stop 137 disposed during their respective transport and at the same time with a Tarhol york be transported, which is larger than the
- the at least one secondary acceleration means 1 19 is preferred as with respect to the transport direction T behind the at least one
- Front stop 137 arranged secondary acceleration means 119 formed.
- the method is preferably characterized in that the transfer rate vu is at least 20%, more preferably at least 30% and even more preferably at least 40% of the processing speed vb and / or that the
- Transfer speed vu is smaller than the processing speed vb and / or at most 80%, preferably at most 70% and more preferably at most 60% of the processing speed vb.
- the method is characterized by the fact that originating from the stack 104 sheet 02 by means of at least one primary
- Acceleration means 136 individually in the transport direction T on a
- a respective arc 02 is moved to a position by means of the at least one primary acceleration means 136
- a respective arc 02 is accelerated to a catch-up speed by means of the at least one primary acceleration means 136, then by means of the at least one primary
- Acceleration means 136 accelerated to a maximum transport speed and passed to the at least one secondary acceleration means 119, and then by means of the at least one secondary accelerating means 1 19 on the
- a respective arc 02 is moved to a position by means of the at least one primary acceleration means 136
- Accelerator 136 to a maximum transport speed then accelerates the at least one primary accelerator 136 to a
- Delayed transfer speed then passed with a transfer speed to the at least one secondary accelerator 1 19,
- the method is preferably distinguished by the fact that the sheets 02 are each connected by means of at least one primary drive M101; M103 driven primary accelerator 136 of a substrate feeder 100 are accelerated to a first speed v1 and the primary drive M101; M103 further preferably as position-controlled electric motor M101; M103 is formed.
- the sheets 02 are each thereafter by means of at least one driven by a secondary drive M102 secondary acceleration means 1 19 of the substrate supply device 100 to a second
- the secondary drive M102 is further preferably designed as a position-controlled electric motor M102.
- the second speed v2 is preferably greater than the first speed v1.
- the method is preferably characterized in that the sheets 02 are then accelerated by means of this at least one secondary accelerating means 1 19 to a third speed v3 which is greater than the second speed v2 and that the sheets 02 in each case thereafter, in particular, by means of this at least one secondary accelerating means 1 19 again to the second
- Speed v2 be slowed down. It is not necessary that the sheets 02 be kept at the second speed v2 before being accelerated to the third speed v3. For example, a continuous monotonous increase in the bow speed from the first speed v1 to the third speed v3 is possible.
- the sheets 02 along a transport path from the Substratzufufhr adopted 100 to at least one further module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000 of the sheet processing machine 01 transported, in particular to a printing module 600.
- the sheets 02 are each thereafter by means of at least one drive M100; M200; 300; M400; M500; M550; M600; M700; M800; M900; 1000 of the at least one further module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, in particular printing module 600 with a
- Processing speed in particular printing speed through the respective further module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, in particular Print module 600 transports and thereby in this respective other module 200; 300; 400; 500; 550; 600; 700; 800; 900; 1000, in particular printing module 600 processed, in particular printed.
- the processing speed in particular
- Print speed is preferably equal to the second speed v2.
- a method is preferred in which the sheets 02 are transported along a transport path from the substrate feeding device 100 to at least one printing module 600 and wherein the sheets 02 are each thereafter by means of at least one drive M600 of the at least one printing module 600 at a printing speed through the respective printing module Transported 600 while doing in this particular
- Printing module 600 are printed and wherein the first speed v1 is smaller than the printing speed.
- the method is preferably characterized in that the printing speed is equal to the second
- Speed v2 is and / or that the second speed v2 is greater than the first speed v1.
- the method is characterized alternatively or additionally by the fact that the sheets 02 in each case at least one time with both the primary acceleration means 136 and with the secondary
- Accelerator 1 19 are in contact.
- the method is characterized alternatively or additionally by the fact that braking the at least one primary acceleration means 136 does not cause a deceleration of the respective arc 02 accelerated directly with this primary acceleration means 136.
- the method is preferably characterized in that a braking of the at least one secondary
- Accelerator 119 causes no braking of the respective directly previously accelerated with this secondary accelerator means 1 19 02 bow. However, if a gap between sheet 02 is closed, preferably takes place Acceleration and then a deceleration of a respective trailing arc 02 by means of the at least one secondary acceleration means 119th
- the method is characterized alternatively or additionally by the fact that the at least one secondary acceleration means 1 19 on the one hand itself accelerated at least temporarily, while a respective arc 02 of the first
- Speed v3 is accelerated and on the other hand braked itself, while a respective arc 02 is braked from the third speed v3 to the second speed v2 and / or that at least one primary accelerator 136 itself is positively accelerated to the respective arc 02 positive
- the at least one primary accelerator 136 itself is accelerated negatively to accelerate the respective sheet 02 negative and / or that at least one secondary accelerator 1 19 itself is positively accelerated to positively accelerate the respective sheet 02 and / / or that the at least one secondary accelerating means 1 19 itself is negatively accelerated in order to negatively accelerate the respective arc 02.
- the method is preferably characterized in that at least one sheet sensor 164 detects a trailing edge of a preceding sheet 02 and generates a trailing edge signal and that at least one sheet sensor 164 detects a leading edge of a trailing sheet 02 and generates a leading edge signal and that Acceleration and / or deceleration of the respective particular trailing arc 02 by means of the at least one secondary acceleration means 119, taking into account the
- the method is characterized alternatively or additionally in that the at least one primary drive M101; M103 and the at least one secondary drive M102, in particular taking into account the background edge signal and / or the leading edge signal and / or in particular by means of the machine control of Sheet processing machine 02 are operated so coordinated that a gap between a preceding sheet 02 and a trailing sheet 02 is reduced and / or adjusted to a value within a predetermined tolerance range by a target value.
- the primary acceleration profile and / or more preferably the secondary acceleration profile is modified depending on signals of the at least one sheet sensor 164.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Ink Jet (AREA)
- Delivering By Means Of Belts And Rollers (AREA)
- Feeding Of Articles By Means Other Than Belts Or Rollers (AREA)
Abstract
L'invention concerne un dispositif d'amenée de substrat (100), au moins deux moyens d'accélération primaires (136) étant agencés de manière adjacente, relativement à une direction transversale (A) et en dessous d'une zone de stockage (134) du dispositif d'amenée de substrat (100) destinée au stockage d'une pile de feuilles (02) d'un substrat (02), et le dispositif d'amenée de substrat (100) présentant au moins un bâti (162) et au moins un châssis de levage (166; 173; 174) pouvant être déplacé au moyen d'un entraînement vertical (M104) relativement audit au moins un bâti (162), au moins relativement à une direction verticale (V), et lesdits au moins deux moyens d'accélération primaires (136) étant portés par ledit au moins un châssis de levage (166; 173; 174) et étant montés de manière à se déplacer à la fois conjointement l'un avec l'autre et avec ledit au moins un châssis de levage (166; 173; 174) relativement à la direction verticale (V), et au moins un moyen de compensation de hauteur (186) individuel destiné à ajuster individuellement une position relative de chaque surface de transport (718) de chaque moyen d'accélération primaire (136) d'une part, et dudit au moins un châssis de levage (166; 173; 174) d'autre part, étant associé auxdits au moins deux moyens d'accélération primaires (136). L'invention concerne également une machine de traitement de feuilles (01).
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102017222315.4 | 2017-12-08 | ||
| DE102017222315.4A DE102017222315B4 (de) | 2017-12-08 | 2017-12-08 | Substratzufuhreinrichtung |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2019110236A1 true WO2019110236A1 (fr) | 2019-06-13 |
Family
ID=64277680
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2018/080636 Ceased WO2019110236A1 (fr) | 2017-12-08 | 2018-11-08 | Dispositif d'amenée de substrat et machine de traitement de feuilles |
Country Status (2)
| Country | Link |
|---|---|
| DE (1) | DE102017222315B4 (fr) |
| WO (1) | WO2019110236A1 (fr) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114589514A (zh) * | 2022-04-20 | 2022-06-07 | 浙江德技新能源科技有限公司 | 铁芯自动流水线设备 |
| CN119694950A (zh) * | 2024-12-24 | 2025-03-25 | 合肥沛顿存储科技有限公司 | 一种可支持双机种兼容作业的封装刻印平台 |
Citations (18)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE2225666A1 (de) | 1972-05-26 | 1973-12-06 | Wickersheim Verpackungsmaschin | Foerder- und ausrichtvorrichtung fuer unverpackte zu stapeln zusammengefasste zeitschriften oder zeitungen als zuteilungsstation fuer verpackungsautomaten |
| JPS58135042A (ja) * | 1982-02-05 | 1983-08-11 | Casio Comput Co Ltd | 給紙装置 |
| US4494745A (en) * | 1981-12-16 | 1985-01-22 | The Ward Machinery Company | Feeding apparatus for paperboard sheets |
| US4557472A (en) | 1982-09-30 | 1985-12-10 | Stepper, Inc. | Multi-purpose feeder for successively delivering single sheet or multi-leaved articles from a stack thereof |
| US5074539A (en) | 1990-09-11 | 1991-12-24 | Ward Holding Company, Inc. | Feeding sheets of corrugated paperboard |
| EP0615941A1 (fr) | 1993-03-16 | 1994-09-21 | Ward Holding Company, Inc. | Contrôle de repérage pour feuilles |
| EP0669208A1 (fr) | 1994-02-28 | 1995-08-30 | Ward Holding Company, Inc. | Montage d'arbre et dispositif pour une machine de traitement de flancs de carton |
| DE69208010T2 (de) | 1991-09-30 | 1996-07-11 | Xerox Corp | Selbstjustierende Reibungszuführvorrichtung mit geschlossenem Regelkreis |
| US20010022422A1 (en) | 2000-02-15 | 2001-09-20 | Masashige Tamura | Sheet conveying apparatus, and image forming apparatus and image reading apparatus having same |
| US20020180138A1 (en) | 2001-06-01 | 2002-12-05 | Ncr Corporation | Active gap controlled feeder |
| DE10227241A1 (de) | 2002-06-19 | 2004-01-15 | Koenig & Bauer Ag | Steuerung für Rotationsdruckmaschinen |
| DE69721715T2 (de) | 1996-12-26 | 2004-03-11 | Pitney Bowes, Inc., Stamford | Artikelförderapparat |
| EP1591230A1 (fr) * | 2004-04-30 | 2005-11-02 | Heidelberger Druckmaschinen Aktiengesellschaft | Dispositif pour alimenter des flans vers une machine à coller des boites pliantes |
| DE102011088776B3 (de) | 2011-12-16 | 2013-01-17 | Koenig & Bauer Aktiengesellschaft | Rotationsdruckmaschine |
| US20130216291A1 (en) | 2012-02-17 | 2013-08-22 | Canon Kabushiki Kaisha | Sheet feeding device and image forming apparatus |
| EP2870093A1 (fr) * | 2012-07-06 | 2015-05-13 | Giesecke & Devrient GmbH | Dispositif et procédé de séparation de documents de valeur et système de traitement de documents de valeur |
| US9162834B1 (en) | 2014-11-12 | 2015-10-20 | Jun-Yen Lee | Front-edge paper feeding device |
| DE102015111525A1 (de) | 2014-08-08 | 2016-02-11 | manroland sheetfed GmbH | Modulare Inkjet-Druckeinrichtung |
-
2017
- 2017-12-08 DE DE102017222315.4A patent/DE102017222315B4/de not_active Expired - Fee Related
-
2018
- 2018-11-08 WO PCT/EP2018/080636 patent/WO2019110236A1/fr not_active Ceased
Patent Citations (18)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE2225666A1 (de) | 1972-05-26 | 1973-12-06 | Wickersheim Verpackungsmaschin | Foerder- und ausrichtvorrichtung fuer unverpackte zu stapeln zusammengefasste zeitschriften oder zeitungen als zuteilungsstation fuer verpackungsautomaten |
| US4494745A (en) * | 1981-12-16 | 1985-01-22 | The Ward Machinery Company | Feeding apparatus for paperboard sheets |
| JPS58135042A (ja) * | 1982-02-05 | 1983-08-11 | Casio Comput Co Ltd | 給紙装置 |
| US4557472A (en) | 1982-09-30 | 1985-12-10 | Stepper, Inc. | Multi-purpose feeder for successively delivering single sheet or multi-leaved articles from a stack thereof |
| US5074539A (en) | 1990-09-11 | 1991-12-24 | Ward Holding Company, Inc. | Feeding sheets of corrugated paperboard |
| DE69208010T2 (de) | 1991-09-30 | 1996-07-11 | Xerox Corp | Selbstjustierende Reibungszuführvorrichtung mit geschlossenem Regelkreis |
| EP0615941A1 (fr) | 1993-03-16 | 1994-09-21 | Ward Holding Company, Inc. | Contrôle de repérage pour feuilles |
| EP0669208A1 (fr) | 1994-02-28 | 1995-08-30 | Ward Holding Company, Inc. | Montage d'arbre et dispositif pour une machine de traitement de flancs de carton |
| DE69721715T2 (de) | 1996-12-26 | 2004-03-11 | Pitney Bowes, Inc., Stamford | Artikelförderapparat |
| US20010022422A1 (en) | 2000-02-15 | 2001-09-20 | Masashige Tamura | Sheet conveying apparatus, and image forming apparatus and image reading apparatus having same |
| US20020180138A1 (en) | 2001-06-01 | 2002-12-05 | Ncr Corporation | Active gap controlled feeder |
| DE10227241A1 (de) | 2002-06-19 | 2004-01-15 | Koenig & Bauer Ag | Steuerung für Rotationsdruckmaschinen |
| EP1591230A1 (fr) * | 2004-04-30 | 2005-11-02 | Heidelberger Druckmaschinen Aktiengesellschaft | Dispositif pour alimenter des flans vers une machine à coller des boites pliantes |
| DE102011088776B3 (de) | 2011-12-16 | 2013-01-17 | Koenig & Bauer Aktiengesellschaft | Rotationsdruckmaschine |
| US20130216291A1 (en) | 2012-02-17 | 2013-08-22 | Canon Kabushiki Kaisha | Sheet feeding device and image forming apparatus |
| EP2870093A1 (fr) * | 2012-07-06 | 2015-05-13 | Giesecke & Devrient GmbH | Dispositif et procédé de séparation de documents de valeur et système de traitement de documents de valeur |
| DE102015111525A1 (de) | 2014-08-08 | 2016-02-11 | manroland sheetfed GmbH | Modulare Inkjet-Druckeinrichtung |
| US9162834B1 (en) | 2014-11-12 | 2015-10-20 | Jun-Yen Lee | Front-edge paper feeding device |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114589514A (zh) * | 2022-04-20 | 2022-06-07 | 浙江德技新能源科技有限公司 | 铁芯自动流水线设备 |
| CN119694950A (zh) * | 2024-12-24 | 2025-03-25 | 合肥沛顿存储科技有限公司 | 一种可支持双机种兼容作业的封装刻印平台 |
Also Published As
| Publication number | Publication date |
|---|---|
| DE102017222315B4 (de) | 2020-11-05 |
| DE102017222315A1 (de) | 2019-06-13 |
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