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CN111016408A - Novel metal wood grain keeps warm and decorates intergral template stamp system - Google Patents

Novel metal wood grain keeps warm and decorates intergral template stamp system Download PDF

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Publication number
CN111016408A
CN111016408A CN201911419092.6A CN201911419092A CN111016408A CN 111016408 A CN111016408 A CN 111016408A CN 201911419092 A CN201911419092 A CN 201911419092A CN 111016408 A CN111016408 A CN 111016408A
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CN
China
Prior art keywords
wood grain
metal wood
roller
grain heat
decoration integrated
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Pending
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CN201911419092.6A
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Chinese (zh)
Inventor
汤红海
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Jiangsu Spanl Co ltd
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Jiangsu Spanl Co ltd
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Application filed by Jiangsu Spanl Co ltd filed Critical Jiangsu Spanl Co ltd
Priority to CN201911419092.6A priority Critical patent/CN111016408A/en
Publication of CN111016408A publication Critical patent/CN111016408A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/02Conveying or guiding webs through presses or machines

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Printing Methods (AREA)

Abstract

The invention relates to a novel metal wood grain heat preservation and decoration integrated board printing system, which belongs to the technical field of decorative board production and comprises an unreeling device, a guide roller, a vertical frame and a tightness adjusting device, wherein the tightness adjusting device is installed on a frame on the front side of a guide device I, the vertical frame is installed on a frame on the front side of the tightness adjusting device, the guide roller is installed on the vertical frame through a bearing, and the unreeling device is installed on a frame on the front side of the vertical frame. Adjust the metal wood grain heat preservation that needs processing through setting up the tightness adjusting device and decorate the rate of tension of intergral template, it has certain tensile force all the time to guarantee that metal wood grain heat preservation decorates the intergral template and gets into initiative embossing roll, it needs initiative leveling roller and initiative embossing roll work to realize its tensioning to avoid metal wood grain heat preservation to decorate the intergral template to appear laxly, and then reduce the power consumption of initiative leveling roller and initiative embossing roll actuating mechanism, also avoid appearing initiative leveling roller and initiative embossing roll also can't drive its condition appearance to the motion of initiative embossing roll one side because of the laxity is too big.

Description

Novel metal wood grain keeps warm and decorates intergral template stamp system
Technical Field
The invention belongs to the technical field of decorative board production, and particularly relates to a novel metal wood grain heat-preservation and decoration integrated board printing system.
Background
The heat-insulation and decoration integrated plate is also called an energy-saving heat-insulation and decoration integrated plate, is not only suitable for heat insulation and decoration of an outer wall of a new building, but also suitable for energy saving and decoration transformation of an old building; the heat insulation board is suitable for various public buildings and external wall external heat insulation of residential buildings; the building is suitable for buildings in cold areas in the north and buildings in hot areas in the south.
In the production process of the metal wood grain heat-insulation and decoration integrated plate, the metal wood grain heat-insulation and decoration integrated plate needs to be printed, so that the attractiveness of the heat-insulation and decoration integrated plate is enhanced. At present, though there is the stamp equipment can decorate the intergral template flattening with metal wood grain heat preservation, also can adjust stamp part alignment metal wood grain heat preservation when decorating the intergral template stamp to metal wood grain heat preservation simultaneously and decorate stamp position on the intergral template, guaranteed the roughness when metal wood grain heat preservation is decorated the intergral template stamp, guaranteed that the stamp device can be better print the stamp on it. For example, patent application No. 2018112189296, the embossing equipment can be used for printing the metal wood grain thermal insulation decorative integrated board when the metal wood grain thermal insulation decorative integrated board is loosened, the metal wood grain heat-preservation and decoration integrated board which needs to be printed cannot be tightened, the metal wood grain heat-preservation and decoration integrated board needs to be conveyed through the active leveling roller and the active printing roller, the tension degree of the metal wood grain heat-insulating and decorating integrated plate is adjusted by the metal wood grain heat-insulating and decorating integrated plate in a loose state, because the guiding device with the leveling groove is arranged, in order to ensure that the metal wood grain heat-preservation and decoration integrated plate can smoothly enter the guiding device under the condition, the driving leveling roller and the driving printing roller motor are always required to consume larger power, when the looseness of the metal wood grain heat preservation and decoration integrated plate is too large, even the active leveling roller and the active embossing roller cannot be driven to move towards one side of the active embossing roller; meanwhile, if the metal wood grain thermal insulation and decoration integrated board is stretched too tightly, the quality of the patterns printed by the printing device 5 is not good.
Therefore, there is a need for improvement of the existing printing equipment to provide a new metal wood grain thermal insulation and decoration integrated board printing system which can meet the modern processing requirements.
Disclosure of Invention
In order to overcome the problems in the prior art, the invention provides a novel metal wood grain heat-preservation and decoration integrated plate printing system, wherein the tightness of a metal wood grain heat-preservation and decoration integrated plate to be processed is adjusted by arranging a tightness adjusting device, so that the metal wood grain heat-preservation and decoration integrated plate is ensured to have a certain tension all the time when entering an active printing roller, the metal wood grain heat-preservation and decoration integrated plate is prevented from loosening, the active leveling roller and the active printing roller are required to work to realize the tension, the power consumption of a driving mechanism of the active leveling roller and the active printing roller is further reduced, and meanwhile, the situation that the active leveling roller and the active printing roller cannot be driven to move to one side of the active printing roller due to overlarge looseness is avoided; meanwhile, the situation that the metal wood grain heat preservation and decoration integrated plate is poor in printing due to too tight stretching is avoided.
In order to realize the purpose, the invention is realized by the following technical scheme:
a novel metal wood grain heat preservation and decoration integrated board printing system comprises a rack 1, a leveling device 2, a guiding device I3, a guiding device II 4, a printing device 5 and an adjusting device; novel metal wood grain heat preservation decorate intergral template stamp system still include unwinding device 41, deflector roll 42, grudging post 43, tightness adjusting device 44, leading device I3's front side frame 1 on install tightness adjusting device 44, install grudging post 43 on the frame 1 of tightness adjusting device 44 front side, install deflector roll 42 through the bearing on the grudging post 43, install unwinding device 41 on the frame 1 of grudging post 43 front side.
Further, the tightness adjusting device 44 comprises two inverted U-shaped supports 45, two air cylinders I46, two sliding groove plates 47, two pushing blocks 48 and an adjusting roller 49, the two inverted U-shaped supports 45 are symmetrically and fixedly installed on the frame 1 respectively, the two sliding groove plates 47 are installed at the tops of the two inverted U-shaped supports 45 respectively, a sliding groove is formed in the inner side wall, opposite to the two sliding groove plates 47, of each inverted U-shaped support 45 respectively, the pushing block 48 is installed in the sliding grooves of the two sliding groove plates 47, the air cylinder I46 is installed below the inverted U-shaped supports 45, the end portion of a piston rod of the air cylinder I46 penetrates through the tops of the inverted U-shaped supports 45 and then is fixedly connected with the bottoms of the pushing blocks 48, and the adjusting roller 49 is installed on the two pushing blocks 48 through a bearing.
Further, unwinding device 41 includes unreeling support 50, unreeling roller 51, unreels motor 52, unreeling support 50 have two, the symmetry is installed in frame 1, unreeling roller 51 passes through the bearing and installs on unreeling support 50, one of them unreels on support 50 fixed mounting have unreel motor 52, the one end of unreeling roller 51 is connected with the power take off terminal who unreels motor 52.
Further, the adjusting device comprises an adjusting wheel 28 arranged at one end of the driven embossing roll 24, an induction opening 31 is formed in the edge of the adjusting wheel 28, two pairs of infrared sensors 29 are arranged on the vertical plate II 20 through a support, the two pairs of infrared sensors 30 are respectively arranged on the guiding device II 4, the distance between the two pairs of infrared sensors 30 is the distance between two groups of cursors in the longitudinal direction of the metal wood grain heat-preservation and decoration integrated plate, the infrared sensors 30 and the infrared sensors 29 are both connected with a controller 40, and the controller 40 is connected with a motor I19 and a motor II 27; the adjusting roller 49 is provided with a pressure sensor 53, the pressure sensor 53 is connected with the controller 40, the controller 40 is connected with the unreeling motor 52, and the controller 40 is connected with the air cylinder I46 through an electromagnetic valve.
The invention has the beneficial effects that:
the tightness degree of the metal wood grain heat-preservation decoration integrated plate to be processed is adjusted by arranging the tightness degree adjusting device, so that the metal wood grain heat-preservation decoration integrated plate is ensured to have a certain tension force all the time when entering the active embossing roll, the metal wood grain heat-preservation decoration integrated plate is prevented from being loosened, the active leveling roll and the active embossing roll are required to work to realize the tensioning, the power consumption of the driving mechanism of the active leveling roll and the active embossing roll is further reduced, and meanwhile, the situation that the active leveling roll and the active embossing roll cannot be driven to move towards one side of the active embossing roll due to too large looseness is avoided; meanwhile, the situation that the metal wood grain heat preservation and decoration integrated plate is poor in printing due to too tight stretching is avoided.
Drawings
FIG. 1 is a front view of the present invention;
FIG. 2 is a schematic structural diagram of a conventional guiding device I and a guiding device II;
FIG. 3 is a front view of a prior art screed apparatus;
FIG. 4 is a right side view of a prior art screed;
FIG. 5 is a front view of a prior art printing apparatus;
FIG. 6 is a right side view of a prior art printing apparatus;
FIG. 7 is a schematic view of an adjusting wheel and an infrared correlation sensor of a conventional adjusting device;
FIG. 8 is a schematic view of a conventional infrared sensor mounted on a guiding device II;
FIG. 9 is a schematic structural view of a front pair of rollers and a back pair of rollers of the present invention;
FIG. 10 is a schematic view of a conventional integrated plate with metal wood grain insulation and decoration;
FIG. 11 is a schematic diagram of a control structure according to the present invention;
FIG. 12 is a front view of the slack adjuster of the present invention;
FIG. 13 is a right side view of the slack adjuster of the present invention;
fig. 14 is a right side view of the unwinding device of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the embodiments of the present invention and the accompanying drawings, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1, metal wood grain heat preservation decorate intergral template stamp correlation system include frame 1, leveling device 2, guider I3, guider II 4, stamp device 5, adjusting device, the front portion of frame 1 be provided with leveling device 2, guider I3 is installed on leveling device 2's preceding lateral wall, install stamp device 5 on leveling device 2's the rear side frame 1, install guider II 4 on stamp device 5's the preceding lateral wall, install on stamp device 5 and adjust the metal wood grain heat preservation and decorate intergral template on stamp device and stamp the adjusting device that the position is aligned with stamp device 5 stamp position. Novel metal wood grain heat preservation decorate intergral template stamp system still include unwinding device 41, deflector roll 42, grudging post 43, tightness adjusting device 44, leading device I3's front side frame 1 on install tightness adjusting device 44, install grudging post 43 on the frame 1 of tightness adjusting device 44 front side, install deflector roll 42 through the bearing on the grudging post 43, install unwinding device 41 on the frame 1 of grudging post 43 front side.
As shown in fig. 12 and 13, the tightness adjusting device 44 includes two inverted U-shaped brackets 45, two air cylinders i 46, two chute plates 47, push blocks 48 and adjusting rollers 49, the two inverted U-shaped brackets 45 are respectively and symmetrically and fixedly mounted on the frame 1, the two chute plates 47 are respectively mounted at the tops of the two inverted U-shaped brackets 45, a chute is respectively formed in the inner side walls, opposite to the two chute plates 47, of each inverted U-shaped bracket 45, the push blocks 48 are mounted in the chutes of the two chute plates 47, the air cylinders i 46 are mounted below the inverted U-shaped brackets 45, the end portions of the piston rods of the air cylinders i 46 penetrate through the tops of the inverted U-shaped brackets 45 and then are fixedly connected with the bottoms of the push blocks 48, and the adjusting rollers 49 are mounted on the two push blocks 48 through bearings. Fixedly mounting the coiled metal wood grain heat-preservation and decoration integrated board on the unreeling device 41; when processing metal wood grain heat preservation decorates intergral template, the metal wood grain heat preservation of lapping decorates integrative board material end and pulls out, make metal wood grain heat preservation decorate intergral template and walk around from the downside of deflector roll 42, then walk around the back from adjusting roll 49 upside, get into guider I3 in proper order, leveling device 2, guider II 4, stamp device 5, the stamp in-process, if the metal wood grain heat preservation that unwinding device 41 emitted decorates integrative board when lax appears, the accessible starts cylinder I46, promote the spout upward movement on sliding groove board 47 by the piston rod of cylinder I46, and then draw the metal wood grain heat preservation that the parcel was on it and decorate integrative board upward movement by adjusting roll 49, from the tensioning that realizes metal wood grain heat preservation and decorate integrative board. When the tension degree of the metal wood grain heat-preservation and decoration integrated plate is too large, the situation that the metal wood grain heat-preservation and decoration integrated plate is not supplied timely and poor in printing is possibly caused, at the moment, the cylinder I46 can be started, the piston rod of the cylinder I46 drives the push block 48 to move downwards along the sliding groove on the sliding groove plate 47, and then the adjusting roller 49 moves downwards, so that the metal wood grain heat-preservation and decoration integrated plate wrapped on the cylinder I also moves downwards, the metal wood grain heat-preservation and decoration integrated plate is prevented from being pulled by the adjusting roller 49, the tension degree of the metal wood grain heat-preservation and decoration integrated plate is ensured not to be too large, the tension of the metal wood grain heat-preservation and decoration integrated plate is adjusted, and the situation that the metal wood grain heat-preservation; guarantee that metal wood grain keeps warm and decorates intergral template and can have certain rate of tension and enter into guiding device I3, leveling device 2, guiding device II 4, stamp device 5 in, guarantee that final stamp is respond well.
As shown in fig. 14, the unwinding device 41 includes two unwinding brackets 50, two unwinding rollers 51, and two unwinding motors 52, the two unwinding brackets 50 are symmetrically installed on the frame 1, the unwinding rollers 51 are installed on the unwinding brackets 50 through bearings, one of the unwinding brackets 50 is fixedly installed with the unwinding motor 52, and one end of the unwinding roller 51 is connected to a power output end of the unwinding motor 52. The metal wood grain heat-preservation decoration integrated plate is loosened by driving the unreeling roller 51 by the unreeling motor 52, so that the situation that the unreeling roller emits too many metal wood grain heat-preservation decoration integrated plates under the action of inertia force by adopting the traditional driven unreeling roller can be avoided, and the tension degree of the metal wood grain heat-preservation decoration integrated plates cannot be adjusted better.
As shown in fig. 2, the guiding device i 3 and the guiding device ii 4 have the same structure, and each of the guiding devices comprises a supporting plate 7, a front pair of rollers 8, a rear pair of rollers 9 and an edge leveling block 10, the supporting plate 7 is fixedly mounted on the leveling device 2 or the printing device 5, the front pair of rollers 8 and the rear pair of rollers 9 are respectively mounted at the front end and the rear end of the supporting plate 7, the edge leveling blocks 10 are respectively mounted at two sides of the supporting plate 7, and a leveling groove 11 is formed in the inner side wall of each edge leveling block 10. As shown in fig. 9, the front roller pair 8 and the rear roller pair 9 have the same structure and each include an adjusting bracket 35, a lower guide roller 36, an upper guide roller 37 and an adjusting nut 38, the two adjusting brackets 35 are respectively installed at two sides of the supporting plate 7, the adjusting bracket 35 is provided with a strip-shaped hole 39, the lower guide roller 36 and the upper guide roller 37 are rotatably installed on the corresponding fixing shaft, the lower guide roller 36 and the upper guide roller 37 are arranged in parallel, and the fixing shafts of the lower guide roller 36 and the upper guide roller 37 are respectively fixed in the strip-shaped hole 39 through the adjusting nut 38. Through elasticity adjusting nut 38, can adjust down the position of deflector roll 36 and last deflector roll 37, make metal wood grain heat preservation decorate integrated board can pass between deflector roll 36 and the last deflector roll 37 down, carry out first flattening to metal wood grain heat preservation decoration integrated board through deflector roll 36 and last deflector roll 37 down to the limit portion of metal wood grain heat preservation decoration integrated board is located the flattening groove 11 of limit flattening piece 10, can metal wood grain heat preservation decorate the effect that the integrated board has the direction. Guiding device I3 guide metal grain keeps warm and decorates intergral template and can carry out the flattening in the level enters into leveling device 2, and the metal grain that guiding device II 4 guide after the flattening keeps warm and decorates intergral template level and get into stamp device 5 and carry out stamp processing.
As shown in fig. 3 and 4, the leveling device 2 includes two vertical plates i 12, a mounting plate i 13, two air cylinders 14, leveling push blocks 15, driven leveling rollers 16, a driving leveling roller 17, a gear i 18, and a motor i 19, wherein the two vertical plates i 12 are respectively and fixedly mounted on two sides of the frame 1, a groove is respectively formed on each of the two vertical plates i 12, the mounting plate i 13 is mounted on the groove, the air cylinders 14 are fixedly mounted on the mounting plate i 13, piston rods of the air cylinders 14 penetrate through the mounting plate i 13 to be connected with the leveling push blocks 15 mounted in the grooves, two ends of the driven leveling rollers 16 are respectively mounted on the two leveling push blocks 15 through bearings, the driving leveling roller 17 parallel to the driven leveling rollers 16 is arranged right below the driven leveling rollers 16, two ends of the driving leveling roller 17 are mounted on the frame 1 through bearings, one end of the driving leveling roller 17 is connected with the motor i 19, the driving roller 17 is meshed with the driven leveling rollers 16 through the gear, the upper surface of the active leveling roller 17 is at the same height as the upper surfaces of the lower guide rollers 36 of the guide devices i 3 and ii 4. Can realize installing driven flattening roller 16 upwards removing on flattening ejector pad 15 through cylinder 14 to guarantee that metal grain keeps warm and decorates integrated board and can follow driven flattening roller 16, pass between the initiative flattening roller 17, driven flattening roller 16 of rethread cylinder 14 adjustment is pressed on metal grain keeps warm and decorates integrated board, motor I19 drives initiative flattening roller 17 and rotates with driven flattening roller 16, at the in-process of carrying metal grain keeps warm and decorates integrated board, decorate integrated board with metal grain keeps warm and carries out the flattening. The metal wood grain keeps warm after the flattening decorates intergral template and is gone into stamp device 5 by II 4 guide levels of guider and carry out stamp processing.
As shown in fig. 5 and 6, the printing device 5 includes two vertical plates ii 20, two mounting plates ii 21, two ball screws 22, two printing push blocks 23, two driven printing rollers 24, two driving printing rollers 25, a gear ii 26, and a motor ii 27, the two vertical plates ii 20 are respectively and fixedly mounted on two sides of the frame 1, a groove is respectively formed on the two vertical plates ii 20, the mounting plates ii 21 are mounted on the groove, the two ball screws 22 are fixedly mounted on the two mounting plates ii 21, two lead screws of the two ball screws 22 respectively penetrate through the corresponding mounting plates ii 21 to be connected with the printing push blocks 23 mounted in the groove, two ends of the driven printing rollers 24 are respectively mounted on the two printing push blocks 23 through bearings, the driving printing rollers 25 parallel to the driven printing rollers 24 are arranged right below the driven printing rollers 24, two ends of the driving printing rollers 25 are mounted on the frame 1 through bearings, one end of the driving printing rollers 25 is connected with the motor ii 27, the driving embossing roll 25 is meshed with the driven embossing roll 24 through a gear II 26. The upper surface of initiative embossing roll 25 and the 36 upper surfaces of lower deflector roll of guider II 4 are at same height, can realize installing driven embossing roll 24 rebound on stamp ejector pad 23 through two ball screw 22, metal grain heat preservation after guaranteeing the flattening decorates intergral template and can follow driven embossing roll 24, pass between the initiative embossing roll 25, the driven embossing roll 24 of rethread two ball screw 22 adjustments is pressed on metal grain heat preservation decorates intergral template, motor II 27 drives initiative embossing roll 25 and rotates with driven embossing roll 24, carry the in-process of metal grain heat preservation decoration intergral template, decorate the intergral template and carry out the stamp by initiative embossing roll 25 and driven embossing roll 24 to metal grain heat preservation.
As shown in fig. 7-8 and 10, the adjusting device comprises an adjusting wheel 28 mounted at one end of the driven embossing roll 24, an induction opening 31 is formed in the edge of the adjusting wheel 28, two pairs of infrared sensors 29 are mounted on a vertical plate ii 20 through a bracket, two pairs of infrared sensors 30 are respectively mounted on a guiding device ii 4, the distance between the two pairs of infrared sensors 30 is the distance between two groups of cursors in the longitudinal direction of the metal wood grain heat preservation and decoration integrated plate, the infrared sensors 30 and the infrared sensors 29 are both connected with a controller 40, and the controller 40 is connected with a motor i 19 and a motor ii 27; the adjusting roller 49 is provided with a pressure sensor 53, the pressure sensor 53 is connected with the controller 40, the controller 40 is connected with the unreeling motor 52, and the controller 40 is connected with the air cylinder I46 through an electromagnetic valve. The circumferences of the printing parts of the driven printing roller 24 and the driving printing roller 25 are consistent with the distance between two groups of cursors in the longitudinal direction of the metal wood grain heat-preservation and decoration integrated plate, when the driven printing roller 24 rotates for one circle, the adjusting wheel 28 rotates for one circle, when the induction opening 31 on the adjusting wheel 28 rotates to the position of the infrared correlation sensor 29, the printing parts on the metal wood grain heat-preservation and decoration integrated plate need to enter a printing preparation state, the infrared correlation sensor 29 senses corresponding correlation signals from the induction opening 31 and transmits the signals to the controller 40, meanwhile, two pairs of infrared sensors 30 on the guiding device II 4 sense the cursors 34 which need to be opposite to the two groups of cursors 34 on the metal wood grain heat-preservation and decoration integrated plate before entering the printing device 5, if only the infrared sensor 30 close to the front pair of rollers 8 senses the cursors 34 in the process of one circle of the driven printing roller 24, and the infrared sensor 30 close to the rear pair of rollers 9 does not sense the cursor 34, which indicates that the part to be printed of the metal wood grain thermal insulation decoration integrated plate is not conveyed in place, the controller 40 is required to control the motor II 27 to rotate forwards, the motor I19 is controlled to stop working, the driven printing roller 24 and the driving printing roller 25 are used for driving the metal wood grain thermal insulation decoration integrated plate to continue to move towards one side of the printing device 5 until the two pairs of cursors are just right opposite to the two pairs of infrared sensors 30 on the guiding device II 4, then the controller 40 is used for controlling the motor II 27 to rotate forwards, the motor I19 is controlled to rotate forwards, and the driven printing roller 24 and the driving printing roller 25 are matched to transmit the printed part of the metal wood grain thermal insulation decoration integrated plate to the printing device for. If the infrared sensor 30 close to the front pair of rollers 8 and the infrared sensor 30 close to the back pair of rollers 9 sense the cursor 34 in the process of one rotation of the driven printing roller 24, and the infrared sensor 30 is opposite to the cursor 34, if the printing position of the metal wood grain heat preservation and decoration integrated plate is conveyed to be out of position, the controller 40 is required to control the motor II 27 to rotate reversely and control the motor I19 to stop working, the driven embossing roll 24 and the driving embossing roll 25 drive the metal wood grain heat preservation and decoration integrated board to continue to move to the side far away from the embossing device 5 until the two pairs of cursors are just opposite to the two pairs of infrared sensors 30 on the guiding device II 4, then, the controller 40 controls the motor II 27 and the motor I19 to rotate forwards, and the driven embossing roller 24 and the driving embossing roller 25 cooperate to transmit the embossing part of the metal wood grain heat-preservation decoration integrated plate to the metal wood grain heat-preservation decoration integrated plate for embossing. Therefore, the driven embossing roller 24 and the driving embossing roller 25 can be precisely embossed on the embossing part of the metal wood grain heat-insulation decorative integrated plate, and the production quality of the metal wood grain heat-insulation decorative integrated plate is guaranteed.
Through installing pressure sensor 53 on adjusting roller 49, can respond to metal wood grain heat preservation in real time and decorate integrative board and apply pressure on adjusting roller 49, the elasticity degree of metal wood grain heat preservation decoration integrative board is judged to the size of accessible pressure, and then the rate of tension that metal wood grain heat preservation decorated integrative board is adjusted to I46 of solenoid valve start cylinder by controller 40 control, thereby guarantee that metal wood grain heat preservation decorates the integrative board and can have certain rate of tension all the time and enter into guider I3, leveling device 2, guider II 4, among the stamp device 5, guarantee that final stamp is respond well.
As shown in fig. 1, a support frame 32 is arranged at the bottom of the frame 1, and a roller 33 capable of ensuring the smooth movement of the metal wood grain thermal insulation and decoration integrated board printing and correlation system is arranged at the bottom of the support frame 32. The metal wood grain heat preservation and decoration integrated board printing correlation system can be quickly and conveniently moved to a corresponding position in a workshop according to the position of the unreeling device or the subsequent equipment matched with processing.
The working process of the invention is as follows:
fixing the coiled metal wood grain heat preservation and decoration integrated board which is not printed on the unreeling device, lifting an upper guide roller 37 through an adjusting nut 38 on a loosening guide device I3, lifting a driven leveling roller 16 through an air cylinder 14, lifting a driven printing roller 24 through a double ball screw 22, then pulling out the end of the coiled metal wood grain heat preservation and decoration integrated board material, sequentially pressing the upper guide roller 37 through the lower guide roller 36 of the guide device I3, the driving leveling roller 17, the lower guide roller 36 of the guide device II 4 and the upper surface of the driving printing roller 25, then pressing the upper guide roller 37 through the adjusting nut 38 on the guide device I3, pressing the driven leveling roller 16 through the air cylinder 14, and pressing the driven printing roller 24 to the metal wood grain heat preservation and decoration integrated board material below through the double ball screw 22. The controller 4 starts the motor I19 and the motor II 27, the metal wood grain heat-preservation decoration integrated plate material required to be printed is transported to the printing device 5 for printing treatment, when the driven printing roller 24 rotates for a circle, only the infrared sensor 30 close to the front pair of rollers 8 senses the cursor 34, and the infrared sensor 30 close to the back pair of rollers 9 does not sense the cursor 34, the part of the metal wood grain heat-preservation decoration integrated plate to be printed is not conveyed in place, the controller 40 is required to control the motor II 27 to rotate forwards, the motor I19 is controlled to stop working, the driven printing roller 24 and the driving printing roller 25 are used for driving the metal wood grain heat-preservation decoration integrated plate material to continue to move towards one side of the printing device 5 until the two pairs of cursors are just right opposite to the two pairs of infrared sensors 30 on the guide device II 4, then the controller 40 is used for controlling the motor II 27 to rotate forwards, the motor, the driven embossing roll 24 and the driving embossing roll 25 cooperate to transmit the embossing part of the metal wood grain heat-preservation and decoration integrated plate to the embossing part for embossing. When the driven printing roll 24 rotates for a circle, the infrared sensors 30 close to the front pair of rollers 8 and the infrared sensors 30 close to the back pair of rollers 9 both sense the cursor 34, and the infrared sensors 30 are opposite to the cursor 34, if the printing position of the metal wood grain heat preservation and decoration integrated plate is conveyed to be out of position, the controller 40 is required to control the motor II 27 to rotate reversely and control the motor I19 to stop working, the driven embossing roll 24 and the driving embossing roll 25 drive the metal wood grain heat preservation and decoration integrated board to continue to move to the side far away from the embossing device 5 until the two pairs of cursors are just opposite to the two pairs of infrared sensors 30 on the guiding device II 4, then, the controller 40 controls the motor II 27 and the motor I19 to rotate forwards, and the driven embossing roller 24 and the driving embossing roller 25 cooperate to transmit the embossing part of the metal wood grain heat-preservation decoration integrated plate to the metal wood grain heat-preservation decoration integrated plate for embossing.
In the printing process, if the metal wood grain heat preservation and decoration integrated board released by the unreeling device 41 is loosened, the pressure sensed by the pressure sensor 53 is too small, the pressure sensor 53 transmits a signal to the controller 40, the controller 40 controls the electromagnetic valve to start the air cylinder I46, the piston rod of the air cylinder I46 pushes the push block 48 to move upwards along the sliding groove on the sliding groove plate 47, and then the adjusting roller 49 pulls the metal wood grain heat preservation and decoration integrated board wrapped on the push block to move upwards, so that the metal wood grain heat preservation and decoration integrated board is tensioned. When the metal wood grain heat preservation and decoration integrated plate tension degree is too big, the situation that the metal wood grain heat preservation and decoration integrated plate is not supplied with time and bad printing is caused possibly, at the moment, the pressure sensed by the pressure sensor 53 is too big, the pressure sensor 53 transmits a signal to the controller 40, the controller 40 controls the electromagnetic valve to start the air cylinder I46, the piston rod of the air cylinder I46 drives the push block 48 to move downwards along the sliding groove on the sliding groove plate 47, and then the adjusting roller 49 moves downwards, so that the metal wood grain heat preservation and decoration integrated plate wrapped on the air cylinder I also moves downwards, the metal wood grain heat preservation and decoration integrated plate is prevented from being pulled by the adjusting roller 49, the tension degree of the metal wood grain heat preservation and decoration integrated plate is ensured not to be too big, thus, the metal wood grain heat preservation and decoration integrated plate can have certain tension degree to enter the guide device I3, the leveling device, In the printing device 5, the final printing effect is ensured to be good.
The tightness degree of the metal wood grain heat-preservation decoration integrated plate to be processed is adjusted by arranging the tightness degree adjusting device, so that the metal wood grain heat-preservation decoration integrated plate is ensured to have a certain tension force all the time when entering the active embossing roll, the metal wood grain heat-preservation decoration integrated plate is prevented from being loosened, the active leveling roll and the active embossing roll are required to work to realize the tensioning, the power consumption of the driving mechanism of the active leveling roll and the active embossing roll is further reduced, and meanwhile, the situation that the active leveling roll and the active embossing roll cannot be driven to move towards one side of the active embossing roll due to too large looseness is avoided; meanwhile, the situation that the metal wood grain heat preservation and decoration integrated plate is poor in printing due to too tight stretching is avoided.
Finally, it is noted that the above-mentioned embodiments illustrate rather than limit the invention, and that, although the invention has been described in detail with reference to preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the invention as defined by the appended claims.

Claims (4)

1. A novel metal wood grain heat preservation and decoration integrated board printing system comprises a rack (1), a leveling device (2), a guiding device I (3), a guiding device II (4), a printing device (5) and an adjusting device; the method is characterized in that: novel metal wood grain heat preservation decorate intergral template stamp system still include unwinding device (41), deflector roll (42), grudging post (43), tightness adjusting device (44), the front side frame (1) of guider I (3) on install tightness adjusting device (44), install grudging post (43) on frame (1) of tightness adjusting device (44) front side, install deflector roll (42) through the bearing on grudging post (43), install unwinding device (41) on frame (1) of grudging post (43) front side.
2. The novel metal wood grain thermal insulation and decoration integrated board printing system as claimed in claim 1, wherein: elasticity adjusting device (44) including type of falling U support (45), cylinder I (46), chute board (47), ejector pad (48), adjusting roller (49), type of falling U support (45) have two, symmetry fixed mounting is in frame (1) respectively, two chute boards (47) are installed respectively to the top on two type of falling U supports (45), a spout has been seted up respectively on two relative inside walls of chute board (47) on every type of falling U support (45), ejector pad (48) are installed in the spout of two chute boards (47), cylinder I (46) are installed to the below of type of falling U support (45), the bottom fixed connection with ejector pad (48) behind the piston rod tip of cylinder I (46) passed type of falling U support (45), adjusting roller (49) are installed on two ejector pads (48) through the bearing.
3. The printing system of the novel metal wood grain heat-preservation and decoration integrated plate as claimed in claim 1 or 2, wherein: unwinding device (41) including unreeling support (50), unreel roller (51), unreel motor (52), unreel support (50) have two, the symmetry is installed in frame (1), unreel roller (51) and install on unreeling support (50) through the bearing, one of them unreels on support (50) fixed mounting have and unreel motor (52), the one end of unreeling roller (51) is connected with the power take off terminal who unreels motor (52).
4. The novel metal wood grain thermal insulation and decoration integrated board printing system as claimed in claim 3, wherein: the adjusting device comprises an adjusting wheel (28) which is arranged at one end of the driven embossing roller (24), an induction opening (31) is formed in the edge of the adjusting wheel (28), infrared correlation sensors (29) are arranged on the vertical plate II (20) through a support, two pairs of infrared sensors (30) are respectively arranged on the guiding device II (4), the distance between the two pairs of infrared sensors (30) is the distance between two groups of cursors in the longitudinal direction of the metal wood grain heat-preservation and decoration integrated plate, the infrared sensors (30) and the infrared correlation sensors (29) are both connected with a controller (40), and the controller (40) is connected with a motor I (19) and a motor II (27); a pressure sensor (53) is installed on the adjusting roller (49), the pressure sensor (53) is connected with a controller (40), the controller (40) is connected with an unreeling motor (52), and the controller (40) is connected with an air cylinder I (46) through an electromagnetic valve.
CN201911419092.6A 2019-12-31 2019-12-31 Novel metal wood grain keeps warm and decorates intergral template stamp system Pending CN111016408A (en)

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CN112757765A (en) * 2021-01-12 2021-05-07 龚建设 Stamp system of processing for clothing production
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CN114643174A (en) * 2022-03-23 2022-06-21 嘉兴市玖琳新材料科技有限公司 Automatic leveling device for release film coating production and method thereof

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Application publication date: 20200417