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WO2000038888A1 - Dispositif de manipulation - Google Patents

Dispositif de manipulation Download PDF

Info

Publication number
WO2000038888A1
WO2000038888A1 PCT/EP1999/010380 EP9910380W WO0038888A1 WO 2000038888 A1 WO2000038888 A1 WO 2000038888A1 EP 9910380 W EP9910380 W EP 9910380W WO 0038888 A1 WO0038888 A1 WO 0038888A1
Authority
WO
WIPO (PCT)
Prior art keywords
handling device
elements
pin
working position
shaped
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
Application number
PCT/EP1999/010380
Other languages
German (de)
English (en)
Inventor
Herbert Lutz
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from DE19935791A external-priority patent/DE19935791A1/de
Application filed by Individual filed Critical Individual
Priority to AT99964675T priority Critical patent/ATE275025T1/de
Priority to EP99964675A priority patent/EP1140434B1/fr
Priority to DE59910411T priority patent/DE59910411D1/de
Priority to AU30436/00A priority patent/AU3043600A/en
Publication of WO2000038888A1 publication Critical patent/WO2000038888A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25CHAND-HELD NAILING OR STAPLING TOOLS; MANUALLY OPERATED PORTABLE STAPLING TOOLS
    • B25C3/00Portable devices for holding and guiding nails; Nail dispensers
    • B25C3/006Portable devices for holding and guiding nails; Nail dispensers only for holding and guiding
    • B25C3/008Portable devices for holding and guiding nails; Nail dispensers only for holding and guiding the nail being hit by a hammer head

Definitions

  • the present invention relates to a handling device designed for guiding pin-shaped fastening elements, such as nails, hooks, screws or the like.
  • pin-shaped fastening elements such as nails, hooks, screws or the like
  • the pin-shaped fastening element is usually held between two fingers, for example between the thumb and the index finger of one hand, and with a tool, for example with a hammer, with pliers or with a screwdriver in the other hand, into the wall, into the door, broken into the ceiling or the like.
  • the present invention has for its object to provide a handling device designed for guiding pin-shaped fastening elements, such as nails, hooks, screws or the like, which on the one hand enables inexperienced or inexperienced persons to use such a pin-shaped device Fastening element straight, that is to say to knock, turn or screw or otherwise insert it into the wall, door, ceiling or the like at a desired angle and / or without bending or twisting; on the other hand, the present invention aims to provide a handling device in which the risk of accidents and consequently the risk of injury due to critical situations is minimized; the desired handling device should be inexpensive to manufacture and easy to operate.
  • pin-shaped fastening elements such as nails, hooks, screws or the like
  • a handling device designed for guiding pin-shaped fastening elements, such as nails, hooks, screws or the like, with two half-elements lying against one another along a parting plane in a working position, the first half-element being one in the working position with the Separating plane coinciding first contact surface is provided in the at least one first continuous recess, and the second half element has a second contact surface coinciding in the working position with the separating plane and in the working position adjacent to the first contact surface is provided in the at least one second continuous recess, wherein In the working position, one of the first recesses and one of the second recesses complement each other to form a continuous guide hole for the pin-shaped fastening element, the axis of the guide hole being essentially parallel to the parting plane o which lies in the parting plane and the half elements with their respective contact surface can be moved from the working position into a release position while opening the guide hole.
  • pin-shaped fastening elements such as nails, hooks, screws or the like
  • the handling device thus provides a continuous guide hole for the pin-shaped fastening element, which serves as a guide when inserting, that is, when driving in the nail, screwing in the hook or screwing in the screw.
  • the handling device is held by the person working with her by hand, in which the person also holds the pen-shaped fastening element, against the wall, against the door, against the ceiling or against the like, into which the pen-shaped fastening element is to be inserted.
  • the person then brings the pin-shaped fastening element into the wall, into the door, into the ceiling or into the like with a tool, for example with a hammer, with pliers or with a screwdriver.
  • pin-shaped fastening elements which include hooks, for example, have a head part
  • the person skilled in the art will appreciate in this connection in particular that the preferably roughly cuboidal half elements with their respective contact surfaces according to the invention open the working hole into a Release position are movable.
  • the two half-elements, the respective contact surfaces of which coincide with the parting plane in the working position, are removed from this parting plane in a manner which is not so predictable for the person skilled in the art and give the pin-shaped ones introduced into the wall, the door, the ceiling or the like Fastener free under the opening of the guide hole.
  • the guide hole is substantially cylindrical; and or
  • the cross-sectional area of the guide hole is essentially circular, essentially elliptical, essentially oval and / or essentially polygonal; and or
  • the cross-sectional area of the guide hole is essentially quadrangular or essentially rectangular or essentially square;
  • the support surface of the handling device facing the surface into which the pin-shaped fastening element is to be introduced has at least one support area;
  • At least one support area is assigned to a guide hole formed in the working position
  • At least one contact area of the three contact areas is assigned to a guide hole formed in the working position and the other contact areas are assigned to areas of the contact surface which are free from guide holes formed in the working position;
  • the support areas are arranged essentially symmetrically to the parting plane; and or at least one support area is essentially circular; and or
  • At least one support area is formed in the shape of a suction button
  • first half element and the second half element are articulated to one another and / or can be pivoted relative to one another about a common pivot axis; and or
  • the pivot axis is approximately perpendicular to the parting plane
  • first half element and the second half element are hinged together; and or
  • the first half element and the second half element are connected to one another by at least one pin-shaped connecting element lying in the pivot axis and the at least one pin-shaped connecting element is received in at least one receiving area; and or
  • the first half element has at least one first projection which is assigned to at least a second projection of the second half element, the first projection and the second projection are connected to one another by at least one pin-shaped connecting element lying in the pivot axis and the at least one pin-shaped connecting element is in at least one Recording area added; and or
  • the first projection and / or the second projection are approximately plate-shaped; and or
  • the first projection and the second projection are at least partially overlapping; and or
  • the first half element and the first projection are formed in one piece and / or the second half element and the second projection are formed in one piece;
  • the pin-shaped connecting element is conical and / or the receiving area is designed as a bore;
  • the guide hole formed in the working position has a conical shape
  • the guide hole formed in the working position has an internal thread
  • the guide holes have different cross sections; and or
  • the guide holes have essentially the same cross sections;
  • the respective height of the guide holes is different; and or
  • the thickness of the half elements in the area of one guide hole is different from the thickness of the half elements in the area of another guide hole;
  • the half-elements have stepped sections and / or stepped areas with different thicknesses; and or the half-elements have at least one reinforcing rib and / or reinforcing strut; and or
  • Reinforcing struts essentially perpendicular to the parting plane and / or the reinforcing ribs and / or
  • Reinforcing struts as at least one essentially concentric or elliptical or oval ring or area around it
  • Reinforcing struts substantially square or substantially rectangular or substantially square around the pilot hole;
  • the half-elements and the reinforcing ribs and / or reinforcing struts are formed in one piece;
  • the half-elements and the reinforcing ribs and / or reinforcing struts are made of the same material using injection molding technology; and or
  • the reinforcing ribs and / or reinforcing struts have a width of approximately two millimeters; and or
  • the reinforcing ribs and / or reinforcing struts have different heights
  • the reinforcing ribs and / or reinforcing struts assigned to the guide holes are higher than the reinforcing ribs and / or reinforcing struts not assigned to the guide holes;
  • the respective height of the reinforcing ribs and / or reinforcing struts assigned to the guide holes is different;
  • thermoplastic material are the half elements made of thermoplastic material.
  • the half-elements are at least partially made of transparent material; and or
  • the material of the half-elements is based on polyamide (PA) and / or on polycarbonate (PC), in particular on Makrolon, and / or on polymethyl methacrylate (PMMA) and / or on polystyrene (PS) and / or
  • AMMA Acrylonitrile-methyl methacrylate copolymer
  • the areas of the half-elements assigned to the recesses have inserts made of transparent material; and or
  • the half-elements are essentially rectangular or essentially trapezoidal; and or
  • At least one of the corners of the half-elements facing away from the parting plane is chamfered or removed;
  • At least one locking means is provided, by means of which the half-elements can be fixed in a releasable manner in the working position;
  • the locking means is milled and / or manufactured using injection molding technology; and or the locking means is designed as a rotatable lever and / or as a displaceable lever; and or
  • the locking means is displaceable in a direction substantially perpendicular to the parting plane;
  • the locking means can be displaced along at least one groove-shaped recess provided in at least one of the half-elements; and or
  • the locking means has at least one projecting element which engages in the groove-shaped recess;
  • the projecting element has at least one projecting nose which can be slidably supported in a step or in a groove or in a recess of the channel-shaped recess; and or
  • At least one of the half elements is designed as part of a tool
  • At least one of the half-elements can be integrated into a tool
  • the tool is a spirit level
  • the half-elements are provided for receiving in a pliers-shaped holding device; and or the handling device is designed like pliers; and or
  • the half-elements are cheek-shaped; and or
  • the half-elements are connected to one another by at least one resetting device; and or
  • the half-elements can be moved from the working position into the release position against the restoring force of the restoring device;
  • the resetting device is formed by at least one spring;
  • the spring is designed as a spiral spring which is attached with one end to the first half element and with its other end to the second half element;
  • a holder is assigned to the half-elements, which has at least one recess for receiving the half-elements in the working position, the recess having at least one continuous recess for the pin-shaped fastening element in its region assigned to the guide hole; and or
  • the depression is trough-shaped or step-shaped;
  • the recess is approximately slit-shaped;
  • the half-elements are roughly cuboid.
  • the guide hole is substantially cylindrical, so that the shape of the guide hole can be adapted to the outer shape of the pin-shaped fastening element if the pin-shaped fastening element is, for example, a nail or a hook.
  • its cross-sectional area can be essentially circular, essentially elliptical, essentially oval and / or essentially polygonal, and in particular substantially square or substantially rectangular or essentially square, where, if more than one guide hole is provided within one and the same handling device, these two or more guide holes can each be designed differently, for example such that the Cross-sectional area of the first guide hole is circular and the cross-sectional area of the second guide hole is substantially square. This makes it possible to introduce differently shaped pin-shaped fastening elements with one and the same handling device into the wall, into the door, into the ceiling or into the like.
  • the support surface of the handling device facing the surface into which the pin-shaped fastening element is to be introduced has at least one preferably essentially circular support area.
  • One or more such support areas which are advantageously arranged essentially symmetrically to the parting plane, ensure that the handling device with its support surface facing the wall, the door, the ceiling or the like does not cover the entire surface, but only in places, to a certain extent on the Wall, on the door, on the ceiling or on the like, whereby one when hammering, screwing, screwing or otherwise inserting the pin-shaped fastener into the wall, in the door, in the ceiling or in the like.
  • Surprising protection of the surface for example the paint or plaster, the wall, the door, the ceiling or the like is achieved.
  • the principle here is between one area on which a pressure or a force acts and one area by means of which this pressure or this force is exerted, one or more intermediate areas, for example in Provide form of one or more support areas to be regarded as disclosed essential to the invention.
  • the surface of the wall, the door, the ceiling or the like is particularly advantageously protected from damage to the surface material, for example the paint or plaster, if at least one contact area is assigned to a guide hole formed in the working position.
  • the area of the guide hole in which the force exerted by the tool for example the hammer, pliers or screwdriver, is greatest when inserting the pin-shaped fastening element is particularly supported by the support area ; in this way, an additional guide for the pin-shaped fastening element is also brought about.
  • three-point technique means that three support areas are provided on the support surface of the handling device facing the surface into which the pin-shaped fastening element is to be inserted, preferably at least one support area of the three support areas one in the Is assigned to the working position formed guide hole and wherein the further contact areas are assigned to areas of the contact surface that are free of guide holes formed in the working position.
  • At least one support area can be designed in the form of a suction button. This ensures that the handling device can be releasably attached to the wall, door, ceiling or the like, so that unintentional and undesirable slipping or shifting of the handling device during the insertion of the pin-shaped fastener is reliably prevented.
  • the handling device according to the present invention is to be developed in a particularly advantageous manner, an embodiment is recommended in which the first half element and the second half element are articulated to one another and / or can be pivoted relative to one another about a common pivot axis.
  • the pivot axis can be approximately perpendicular to the parting plane, so that one of the two Half elements or, if necessary, both half elements after the pin-shaped fastening element has been introduced into the wall, door, ceiling or the like, for example hammered in, screwed in with pliers or screwed in with a screwdriver, parallel to the parting plane, that is to say can be folded "up” or “down” to release the mounting pin inserted into the wall, door, ceiling or the like, and thus the handling device from the wall, door, ceiling or the like to be able to remove.
  • the pivot axis in the handling device according to the present invention is approximately parallel to the parting plane or the pivot axis lies in the parting plane.
  • This technical configuration means that one of the two half-elements or, if necessary, both half-elements, after the pin-shaped fastening element has been introduced into the wall, into the door, into the ceiling or into the like, for example hammered in, screwed in with pliers or screwed in with a screwdriver is, in a sense comparable to a wing door laterally, that is to say folded away "outwards" laterally, in order to release the fastening pin introduced into the wall, in the door, in the ceiling or in the like and consequently the handling device from the wall, from the door to be able to remove from the ceiling or the like.
  • first half element and the second half element are connected to one another in a hinge shape.
  • first half element and the second half element can be connected to one another by at least one pin-shaped connecting element lying in the pivot axis, for example by at least one pin, the at least one pin-shaped connecting element preferably in at least one Receiving area and in particular in at least one bore.
  • two pin-shaped connecting elements and / or two receiving areas are provided, the two pin-shaped connecting elements advantageously being arranged at opposite ends of the first half element and / or wherein the two receiving areas are advantageously arranged at opposite ends of the second half element.
  • the first half element can have at least one first, preferably approximately plate-shaped projection which is assigned to at least one second, preferably approximately plate-shaped projection of the second half element.
  • the first projection and the second projection can be connected to one another by at least one pin-shaped connecting element located in the pivot axis, for example by at least one pin, this at least one pin-shaped connecting element preferably being received in at least one receiving area and in particular in at least one bore in which the first projection and the second projection are arranged at least partially overlapping.
  • the first half element and the first projection can be formed in one piece; for the same purpose and in the same way, the second half element and the second projection can also be formed in one piece.
  • two first projections and / or two second projections are provided, the two first projections advantageously being arranged on opposite ends of the first half element and / or the two second projections advantageously being arranged on opposite ends of the second half element .
  • the pivot axis is approximately parallel to the parting plane or the pivot axis lies in the parting plane can be realized in a convincing manner.
  • the in the guide hole formed in the working position has a conical shape.
  • a conical shape which tapers slightly conically in the direction of the wall, the door, the ceiling or the like, facilitates the introduction of the pin-shaped fastening element into the wall, into the door, into the ceiling or the like insofar as certain tolerances or inaccuracies in in relation to direction and / or accuracy when driving in, screwing in or screwing in can be compensated.
  • the handling device according to the present invention can be used in a convincing manner not only when driving in a nail, but also, for example, when screwing in a hook or screwing in a screw.
  • the guide hole formed in the working position has an internal thread, since this makes screwing in or screwing in noticeably easier even for inexperienced or inexperienced persons.
  • two or more guide holes are formed in the working position.
  • the guide holes expediently have different cross sections. This makes it possible to use the handling device according to the present invention for pin-shaped fastening elements with different diameters, that is to say depending on the cross section of the pin-shaped part of the Fastening element uses the matching guide holes available in the working position. As a result, the range of use and the flexibility of the present handling device are significantly increased.
  • the guide holes have essentially the same cross sections. This has no negative effects on the flexible handling and on the various uses of the present invention.
  • the axes of the guide holes are inclined at different angles of attack. This technical measure makes it possible to insert the pin-shaped fastening elements into the wall, into the door, into the ceiling or into the like at different angles, that is to say for example perpendicularly or at certain angles of inclination.
  • the respective height of the guide holes is different, for example in that the thickness of the two half elements in the area of one guide hole is different from the thickness of the two half elements in the area of another guide hole.
  • an application of the handling device according to the present invention is also conceivable, in which the pin-shaped fastening element is initially "up to the stop" through a high guide hole, that is, until the head part of the pin-shaped fastening element lies against the surface of the handling device opposite the bearing surface in the wall, in the door, in the ceiling or in the like, is then folded away at least one of the half-elements, in order to release the pin-shaped fastening element and thereby to be able to move and arrange the handling device in such a way that the pin-shaped fastening element is finally replaced by a low guide hole again "up to the stop", that is, until the head part of the pin-shaped fastening element lies against the surface of the handling device opposite the bearing surface, deeper into the wall, into the door, into the Dec ke or can be introduced in the like.
  • the two half-elements can have stepped sections and / or stepped areas with different thicknesses.
  • such an embodiment not only offers advantages essential to the invention with regard to pin-shaped fastening elements of different lengths, but also enables significant material savings, as a result of which the handling device according to the present invention is not only more manageable and lighter, but also cheaper.
  • the thickness of the two half-elements should be chosen to be as small as possible, in order to keep the required cooling time as short as possible and to lead to undesirable, ultimately potential rejects
  • the handling device must be break-proof and splinter-proof as well as impact and shock resistant, not least in view of the fact that when the handling device is used as intended with a tool, for example with a hammer, with pliers or with a screwdriver, so that under certain circumstances considerable forces can act on the handling device.
  • the handling device is therefore to be designed so stable that such impact or impact can be absorbed without damage, that is, without the handling device breaking and without parts of the handling device splintering away. As a result, this means that at present invention a compromise between the desired material savings and the required stability can be found.
  • the half elements constituting the handling device have at least one reinforcing rib and / or reinforcing strut with a width of, for example, about two millimeters, in particular if the half elements have a multiplicity of such reinforcing ribs and / or reinforcing struts.
  • the arrangement of the reinforcing ribs and / or reinforcing struts is not only defined by the respective design of the handling device, but also by the respective requirements for the stability of the handling device.
  • Reinforcing struts essentially perpendicular to the parting plane and / or the reinforcing ribs and / or
  • Reinforcing struts essentially along at least part of the edges of the half-elements and / or the reinforcing ribs and / or
  • Reinforcement struts as at least one essentially concentric or elliptical or oval ring or area around the guide hole and / or the reinforcing ribs and / or reinforcing struts are essentially polygonal, and in particular are essentially square or substantially rectangular or substantially square, around the guide hole.
  • the reinforcing ribs and / or reinforcing struts can be provided on the side of the half-elements facing away from the surface into which the pin-shaped fastening element is to be inserted;
  • the present invention is to be developed in a particularly advantageous manner, it is advisable to form the half-elements and the reinforcing ribs and / or reinforcing struts in one piece, that is to say without interfaces and without seams. This not only brings about a better strength of the handling device, but also an aesthetic and optically attractive shape of the handling device created, as it is made "from a single source”.
  • the half-elements and the reinforcing ribs and / or reinforcing struts are expediently made from the same material in injection molding technology, which enables mass production with a consistently high quality at comparatively low manufacturing costs.
  • the reinforcing ribs and / or reinforcing struts have different heights.
  • the reinforcing ribs and / or reinforcing struts assigned to the guide holes can advantageously be higher than the reinforcing ribs and / or reinforcing struts not assigned to the guide holes, because the reinforcing ribs and / or reinforcing struts assigned to the guide holes have those when the pin-shaped fastening element is introduced into the wall to absorb the door, forces acting in the ceiling or the like.
  • the forces of the hammer, pliers, screwdriver or other tool act directly on the areas of the guide holes, so that it is advisable to increase these areas by means of increased reinforcing ribs and / or
  • Reinforcing struts to reinforce are provided.
  • the respective height of the reinforcing ribs and / or reinforcing struts assigned to the guide holes is different. This has the advantage that, depending on the individual case, the pin-shaped fastening element can be introduced at different depths into the wall, into the door, into the ceiling or into the like.
  • the pin-shaped fastening element is initially "up to the stop" through a high guide hole, that is, until the head part of the pin-shaped fastening element lies against the surface of the handling device opposite the bearing surface in the wall, in the door, in the ceiling or in the like, is then folded away at least one of the half-elements, in order to release the pin-shaped fastening element and thereby to be able to move and arrange the handling device in such a way that the pin-shaped fastening element is finally replaced by a low guide hole again "up to the stop", that is, until the head part of the pin-shaped fastening element lies against the surface of the handling device opposite the bearing surface, deeper into the wall, into the door, into the De cke or can be introduced in the like.
  • plastic in particular thermoplastic
  • the two half-elements can be manufactured in a contemporary manner using injection molding technology.
  • the two half-elements are at least partially made of transparent material, for example made of acrylic glass or plexiglass.
  • Such an improvement can also be achieved in that the areas of the two half-elements assigned to the recesses have inserts made of transparent material, for example made of acrylic glass or plexiglass.
  • the material of the half-elements is preferably based on polyamide (PA) and / or on polycarbonate (PC), in particular on Makrolon, and / or on polymethyl methacrylate (PMMA) and / or on polystyrene ( PS) and / or on acrylonitrile-methyl methacrylate copolymer (AMMA).
  • PA polyamide
  • PC polycarbonate
  • PMMA polymethyl methacrylate
  • PS polystyrene
  • AMMA acrylonitrile-methyl methacrylate copolymer
  • the handling device can be designed so stably that impact or impact effects can be absorbed without damage, that is to say without the handling device breaking and without parts of the handling device being split off.
  • the handling device there are in principle no limits to the shape of the handling device with regard to its shape, but in practice an embodiment is preferred in which the half-elements are essentially rectangular or essentially trapezoidal. In such an embodiment, the handling device is easy to handle and can be stored in a space-saving manner.
  • At least one preferably milled and / or preferably injection molding locking means is provided on the handling device, by means of which the half-elements can be fixed in the working position in a detachable manner.
  • the half-elements are inserted through the Locking means can be locked along the parting plane, the locking means not only being designed for locking the half-elements, but also serving as a handle, in particular when the handling device faces the surface into which the pin-shaped fastening element is to be inserted just that surface rests and must be held securely and precisely in this position by the user of the handling device.
  • the locking means is ideally suited for this holding, in particular when the locking means is designed as a rotatable lever and / or as a displaceable lever.
  • the locking means which can preferably be displaced in the direction substantially perpendicular to the parting plane
  • an embodiment in which the locking means runs along has proven to be advantageous at least one groove-shaped recess provided in at least one of the half-elements can be displaced, as it were in a rail.
  • the locking means can be pushed from the release position of the handling device into the working position of the handling device in such a way that the locking means in the working position grasps both half-elements and these are no longer pivotable relative to one another about their common pivot axis.
  • the locking means can be pushed back from the working position of the handling device into the release position of the handling device in such a way that the locking means is in the release position in the area of only one half element, so that the movement of the two half elements against one another is no longer blocked and this around them common pivot axis are pivotable against each other.
  • the locking means has at least one projecting element which engages in the groove-shaped recess.
  • the projecting element can have at least one protruding nose, which is essential to the invention and can be slidably supported in a step or in a groove or in a recess of the channel-shaped recess.
  • At least one of the two half-elements is designed as part of a tool and / or can be integrated into a tool.
  • the components and the functions of the spirit level can be integrated in the first half element, whereas the second half element can be inserted into a corresponding recess in the spirit level and after inserting the pin-shaped fastening element again is removable to achieve the release position.
  • the training as or the integration in a spirit level has the decisive advantage that a spirit level in connection with the handling device according to the present invention even inexperienced and / or inexperienced people a straight, that is, for example, horizontal or vertical introduction of several pin-shaped fasteners one line.
  • the two half-elements are provided for receiving in a holding device designed as pliers.
  • a holding device designed as pliers.
  • the handling device can be used to a certain extent universally, because the two half-elements can also be clamped by inexperienced or inexperienced users in the working position between the two jaws, for example a pair of pliers, such as a pipe wrench.
  • the pin-shaped fastening element is then introduced into the wall, door, ceiling or the like under the guidance of the handling device according to the present invention, the two half-elements are released by the two jaws of the pliers by the user, which corresponds to the so-called release position.
  • the handling device is in the form of pliers.
  • this means that the handling device is designed in a form integrated with the aforementioned holding device, which enables particularly simple and effective working with the handling device according to the present invention.
  • the compact design of this embodiment also makes it much easier to store the handling device, for example in a tool box or in a tool cabinet.
  • the two half-elements are comparable in the working position with their contact surfaces the jaws of a pair of pliers, along the interface.
  • the two half-elements can be connected to one another by at least one resetting device.
  • the two half-elements can preferably be moved from the working position into the release position counter to the resetting force of the resetting device.
  • the reset device is expediently formed by at least one spring, preferably by at least one spiral spring, which is attached at one end to the first half element and with its other end to the second half element.
  • the half-elements are assigned a holder which has at least one preferably trough-shaped or preferably step-shaped recess for receiving the half-elements in the working position, the recess in its area assigned to the guide hole having at least one continuous, advantageously approximately has slot-shaped recess for the pin-shaped fastener.
  • the recess is necessary in this embodiment insofar as this recess enables the pin-shaped fastening element to pass through to the wall, door, ceiling or the like.
  • the holder with the half elements received in the recess is attached to the Wall, held on the door, on the ceiling or on the like, then the pin-shaped fastening element through one of the guide holes formed in the working position in the wall, in the door, in the ceiling or the like and then lifted or removed the bracket, so that the two half elements with their respective contact surface can be moved from the working position into the release position while opening the guide hole.
  • a preferred embodiment can be offered in which the holder has no boundary wall on at least one side. that is freely accessible.
  • FIGS. 1A to 10 Further refinements, features and advantages of the present invention are described below in the drawings with reference to FIGS. 1A to 10, by way of example ten exemplary embodiments of the handling device according to the present invention are illustrated.
  • Figure 1A shows a first embodiment of a handling device according to the present invention
  • Figure 1B is a bottom view of the
  • Figure IC is a side view of the
  • Figure ID is a side view of a detail of the handling device of Figure 1A according to the section Id in Figure IC;
  • FIG. 1E shows a first exemplary embodiment of a locking means that can be assigned to the handling device from FIG. 1A, in a cross-sectional view;
  • Figure 1F is a side view of the
  • FIG. IG shows a second exemplary embodiment of a locking means that can be assigned to the handling device from FIG. 1A, in a cross-sectional view;
  • Figure 1H is a side view of the
  • Figure 2 shows a second embodiment of a handling device according to the present invention
  • Figure 3 shows a third embodiment of a handling device according to the present invention
  • Figure 4A shows a fourth embodiment of a handling device according to the present invention in the working position
  • Figure 4B is a bottom view of the
  • Figure 4C is a side view of the
  • Figure 5A shows a fifth embodiment of a handling device according to the present invention in the working position
  • Figure 5B is a bottom view of the
  • Figure 5C is a side view of the
  • FIG. 5D shows the left half element of FIG. 5A of the handling device from FIG. 5A;
  • FIG. 5E shows a bottom view of the left half element from FIG. 5D along the line Ve-Ve in FIG. 5D;
  • FIG. 5F shows a side view of the left half element from FIG. 5D along the line Vf-Vf in FIG. 5D;
  • 5G shows the right half element of FIG. 5A of the handling device from FIG. 5A;
  • FIG. 5H shows a bottom view of the right half element from FIG. 5G along the line Vh-Vh in FIG. 5G;
  • FIG. 5J shows a side view of the right half element from FIG. 5G along the line Vj-Vj in FIG. 5G;
  • Figure 6 shows a sixth embodiment of a handling device according to the present invention in the release position
  • Figure 7 shows a seventh embodiment of a handling device according to the present invention in the release position
  • FIG. 8A shows an eighth exemplary embodiment of a handling device according to the present invention in the working position
  • FIG. 8B the handling device from FIG. 8A in the release position
  • Figure 9 shows a ninth embodiment of a handling device according to the present invention in the working position.
  • Figure 10 shows a tenth embodiment of a handling device according to the present invention in the release position. Identical or similar components or features of the present invention are provided with identical reference symbols in FIGS. 1A to 10.
  • FIG. 1A to 10 illustrate ten exemplary embodiments of the handling device according to the present invention.
  • These handling devices are designed for guiding pin-shaped fastening elements, such as nails, hooks, screws or the like, whereby even inexperienced or inexperienced persons are able to use such a pin-shaped fastening element straight, that is to say perpendicularly or at a desired angle of inclination and / or without bending or twisting in a wall, in a door, in a ceiling or in the like, to strike, turn, screw or otherwise introduce.
  • the present invention provides a handling device in which the risk of accidents and consequently the risk of injury due to critical situations is minimized; the handling devices shown by way of example in FIGS. 1A to 10 can be produced inexpensively and are easy to operate.
  • FIGS. 1A to 10 Common to the ten exemplary embodiments of the handling device illustrated in FIGS. 1A to 10 are two along a parting plane 30 (cf. FIGS. 1A, IB, 2, 3, 4A, 5A, 5D, 5G, 8A, 8B, 9 and 10) in one Working position of adjacent half-elements 10, 20.
  • Plastic is chosen as the material for the two half-elements 10, 20 for reasons of production, weight and cost, the two half-elements 10, 20 being manufactured using injection molding technology.
  • the two half-elements 10, 20 are made of transparent material, so that when inserting, that is, for example, when driving in, when screwing in or screwing in the pin-shaped fastening element into the wall, door, ceiling or the like, there is always a clear and unobstructed view to the position into which the pin-shaped fastening element is being inserted is guaranteed and the results that can be achieved with the present handling device are significantly improved.
  • the material of the half-elements 10, 20 is based on thermoplastic material, for example on polycarbonate (PC).
  • the handling device can be designed so stably that impact or impact effects can be absorbed without damage, that is to say without the handling device breaking and without parts of the handling device splintering away.
  • the first half element 10 has a first contact surface 130 (see FIGS. 1A and IB) coinciding in the working position with the parting plane 30 (see FIGS. 1A and 1B), in which two first continuous recesses 11, 12 are provided
  • the second half element 20 is a second contact surface 230 which coincides with the parting plane 30 in the working position (see FIGS. 1A and IB) and adjoins the first contact surface 130 in the working position
  • FIG. IC in which two second continuous recesses 21, 22 are provided (see FIGS. 1A, IB and IC).
  • one of the first recesses 11, 12 and one of the second recesses 21, 22 complement each other to a total of two continuous, essentially circular cylindrical guide holes 1121, 1222, the circular cylinder axis of the guide holes 1121, 1222 lying essentially in the parting plane 30 and wherein the half elements 10, 20 with their respective contact surfaces 130, 230 can be moved from the working position into a release position while opening the guide hole 1121, 1222.
  • the handling device In the working position, the handling device therefore has two through, essentially circular cylindrical guide holes 1121, 1222 for the pin-shaped fastening element Provided, which serve as a guide when inserting, that is, when driving in the nail, when screwing in the hook or when screwing in the screw.
  • the first exemplary embodiment of the present handling device according to FIGS. 1A to IH is held by the person working with it by hand, in which the person also holds the pin-shaped fastening element, against the wall, against the door, against the ceiling or against the like, into which the pin-shaped fastener is to be inserted.
  • the person then brings the pin-shaped fastening element into the wall, into the door, into the ceiling or into the like with a tool, for example with a hammer, with pliers or with a screwdriver.
  • the half elements 10, 20 with their respective contact surfaces 130, 230 can be moved from the working position into a release position by opening the guide holes 1121, 1222.
  • the two half-elements 10, 20, the respective contact surfaces 130, 230 of which coincide in the working position with the parting plane 30, are removed from this parting plane 30 and in this case give the pin-shaped introduced into the wall, in the door, in the ceiling or in the like Fastening element free by opening the guide holes 1121, 1222.
  • the guide holes 1121, 1222 formed in the working position have a slightly conical shape on (see Figures IB and IC).
  • a slightly conical shape which tapers slightly conically in the direction of the wall, the door, the ceiling or the like, facilitates the introduction of the pin-shaped fastening element into the wall, into the door, into the ceiling or the like insofar as certain tolerances or inaccuracies in in relation to direction and / or accuracy when driving in, screwing in or screwing in can be compensated.
  • the handling device has the support surface 60 (see FIGS. IB and IC) facing the surface into which the pin-shaped fastening element is to be introduced, and three essentially circular support areas 61, 62, 63 (see FIGS. 1A, IB and IC).
  • the principle here is one or more intermediate areas, for example in the form of a or, between a surface on which a pressure or a force acts and a surface by means of which this pressure or this force is exerted to provide several support areas, to be regarded as being disclosed as essential to the invention.
  • the surface of the wall, the door, the ceiling or the like is protected from damage to the surface material, for example the paint or the plaster, because the support area 61 in the first exemplary embodiment of the present illustrated in FIGS. 1A to IH
  • Handling device is assigned to the guide hole 1121 formed in the working position.
  • the area of the guide hole 1121 in which the force action by the tool, for example by the hammer, by the pliers or by the screwdriver, is greatest when the pin-shaped fastening element is inserted, in particular by the support area 61 is supported; in this way, an additional guide for the pin-shaped fastening element is also brought about.
  • the term "three-point technology” means that three contact areas 61, 62, 63 are provided on the contact surface 60 facing the surface into which the pin-shaped fastening element is to be inserted, the contact area 61 being that formed in the working position Guide hole 1121 is assigned and wherein the two further contact areas 62, 63 are assigned areas of the contact surface 60 which are free of the guide holes 1121, 1222 formed in the working position.
  • the first half element 10 and the second half element 20 are articulated to one another and can be pivoted relative to one another about a common pivot axis.
  • the swivel axis is parallel to the parting plane 30.
  • one of the two half-elements 10, 20 or, if necessary, also both half-elements 10, 20 after the pin-shaped fastening element into the wall, into the door, into the Inserted ceiling or the like for example hammered in, screwed in with pliers or screwed in with a screwdriver, in a sense comparable to a wing door laterally, that is to say folded out laterally "outwards" around the wall, into the door , to release into the ceiling or the like inserted fastening pin and thus to be able to remove the handling device from the wall, from the door, from the ceiling or from the like.
  • the first half element 10 and the second half element 20 are connected to one another in a hinge-like manner.
  • the first half element 10 has two first, approximately plate-shaped projections 140, 150 which are arranged on opposite ends of the first half element 10 ( see FIGS. IB and IC) and to which two respective second, approximately plate-shaped projections 240, 250 of the second half element 20 are assigned, which are suitably arranged at opposite ends of the second half element 20 (see FIGS. IB and IC ).
  • the pivot axis is approximately parallel to the parting plane 30 or the pivot axis lies in the parting plane 30 can be realized in a convincing manner.
  • the first projection 140 and the second projection 240 are connected to one another in the form of a pin by a pin-shaped connecting element 1424 (see FIGS. 1A and IC) lying in the pivot axis, this pin-shaped connecting element 1424 is accommodated in a receiving area 2414 (see FIGS. 1A and IC) and in this case specifically in a bore in which the first projection 140 and the second projection 240 are partially overlapping; in the same way, the first projection 150 and the second projection 250 are connected by a pin-shaped connecting element 1525 lying in the pivot axis (cf. FIGS.
  • first half element 10 and the two first projections 140, 150 are formed in one piece; for the same purpose and in the same way, the second half element 20 and the two second projections 240, 250 are also formed in one piece.
  • the guide holes 1121, 1222 have essentially the same cross sections. This has to do with the flexible handling and the varied uses of the first
  • Embodiment of the present handling device no negative effects.
  • the half elements 10, 20 constituting the handling device have a plurality of reinforcing ribs / struts 70, 72, 74, 76, 76 'with a width of approximately two millimeters.
  • the arrangement of the reinforcing ribs / struts 70, 72, 74, 76, 76 ' is not only due to the design of the handling device according to the first embodiment, but also due to the requirements for the stability of the handling device according to the first Embodiment defined.
  • the reinforcing ribs / struts 70, 72, 74, 76, 76 ' are provided on the side of the half-elements 10, 20 facing away from the surface into which the pin-shaped fastening element is to be introduced (see FIGS. IB, IC and ID). ; in other words this means that the reinforcing ribs / struts 70, 72, 74, 76, 76 'and the support areas 61, 62, 63 are provided on different sides of the half-elements 10, 20 (see FIGS. IB and IC), which also contributes to increasing the strength of the handling device according to the first embodiment in that the arrangement of the stabilizing elements explained above, a uniform distribution of the forces introduced into the handling device according to FIGS. 1A to IH is favored.
  • This not only brings about a better strength of the handling device according to the first exemplary embodiment, but also creates an aesthetically and optically appealing shape of the handling device of FIGS. 1A to IH, since it is, so to speak, made "from a single source”.
  • the half-elements 10, 20 and the reinforcing ribs / struts 70, 72, 74, 76, 76 ' are made of the same material using injection molding technology, which enables mass production with a consistently high quality at comparatively low manufacturing costs.
  • the reinforcing ribs / struts 70, 72, 74, 76 ' have a height which differs from the height of the reinforcing ribs / struts 76 assigned to the guide hole 1121 in that the latter reinforcing ribs / struts 76 are considerably higher than the reinforcing ribs / struts 70, 72, 74, 76 '.
  • the reinforcing ribs / struts 76 assigned to the guide hole 1121 are raised here because the Assigned guide hole 1121
  • Reinforcing ribs / struts 76 which have to absorb forces acting when the pin-shaped fastening element is inserted into the wall, door, ceiling or the like.
  • the forces of the hammer, pliers, screwdriver or other tool act directly on the area of the guide hole 1121, so that this area is reinforced by increased reinforcing ribs / struts 76.
  • Reinforcing ribs / struts exceeds 76 '. This has the advantage that the pin-shaped fastening element with the first embodiment of the handling device can be inserted at different depths into the wall, into the door, into the ceiling or into the like, depending on the individual case.
  • the half-elements 10, 20 are essentially trapezoidal, because with such a configuration the first embodiment of the handling device is easy to handle and can be stored in a space-saving manner.
  • the half elements 10, 20 in each case have the upper corner in FIG. 1A, facing away from the parting plane 30, which has no special function removed, so that the half elements 10, 20 each have a lateral one Show bevel, this measure not least also benefits the aesthetics and appearance of the first embodiment of the handling device and also reduces its mass.
  • a locking means 80 (cf. a first embodiment of a sprayed locking means 80 in FIGS. 1E and IF and a second embodiment of a milled locking means 80 in FIGS. IG and IH) is provided on the first exemplary embodiment of the handling device, through which the half-elements 10 20 are releasably fixable in the working position.
  • the half-elements 10, 20 in the position in which a pin-shaped fastening element, such as a nail, a hook, a screw or the like, is inserted into a wall, into a door, into a ceiling or into the like , by means of which the locking means 80 can be locked along the parting plane 30, the locking means 80 not only being designed for locking the half-elements 10, 20, but also serving as a handle, specifically when the first embodiment of the handling device with its surface, into which the pin-shaped fastening element is to be inserted, the side facing the same surface and is to be held securely and exactly in this position by the user of the first exemplary embodiment of the handling device.
  • a pin-shaped fastening element such as a nail, a hook, a screw or the like
  • the locking means 80 according to FIGS. 1E, IF, IG and IH is suitable for this holding insofar as the locking means 80 is designed as a displaceable lever.
  • FIGS. 1A to IH in FIG Locking means 80 which can be displaced essentially in the vertical direction can be displaced along a groove-shaped recess 90 provided in the half element 10 (cf. FIGS. 1A, IB, IC and ID), as it were in a rail.
  • the locking means 80 is pushed from the release position of the handling device according to the first embodiment into the working position of the handling device according to the first embodiment such that the locking means 80 in the working position detects both half-elements 10, 20 and these are no longer pivotable relative to one another about their common pivot axis .
  • the locking means 80 In order to enable this shifting of the locking means 80 from the area of the first half element 10 on the left in FIG. 1A into the area of the second half element 20 on the right in FIG.
  • the reinforcing ribs / struts 70 which are essentially parallel to the parting plane 30, and the reinforcing rib / strut 74 running essentially along the left edge of the half element 10 in FIG. 1A are recessed at these points, as can be seen from FIG. 1A.
  • the locking means 80 is pushed back from the working position of the handling device into the release position of the handling device in such a way that the locking means 80 is located in the release position in the area of only the half element 10, so that the movement of the two half elements 10, 20 against one another no longer blocks is and this against each other about their common pivot axis are pivotable.
  • the displaceable movement of the locking means 80 along the half element 10 is implemented in that the locking means 80 has two projecting elements 890 (see FIGS. 1E and IG) which are formed symmetrically to one another and which extend into the groove-shaped recess 90 intervention.
  • Each projecting element 890 here has a projecting nose 892 (see FIGS. 1E and IG), which can be slidably supported in a step 92 (see FIGS. 1A and ID) of the groove-shaped recess 90.
  • the second exemplary embodiment of a handling device according to the present invention shown in FIG. 2 differs from the first exemplary embodiment shown in FIGS. 1A to IH essentially in that the first recesses 11, 12 and the second recesses 21, 22 are not essentially semicircular (cf. 1A), but are essentially rectangular (see FIG. 2), so that in each case one of the first recesses 11, 12 and one of the second recesses 21, 22 in the working position form a total of two continuous, essentially cuboid guide holes 1121 , 1222, whereby the cuboid axis of the guide holes 1121, 1222 lies essentially in the parting plane 30.
  • Reinforcing ribs / struts 76 ' are not designed as concentric rings (see FIGS. 1A, IB and IC), but rather as elliptical or oval rings around the guide holes 1121, 1222 (see FIG. 2).
  • the third exemplary embodiment of a handling device according to the present invention shown in FIG. 3 differs from the first exemplary embodiment shown in FIGS. 1A to IH essentially in that four first recesses 11, 11 ', 12, 12' arranged in pairs and four second recesses arranged in pairs 21, 21 ', 22, 22' are provided.
  • the two first recesses 11, 12 are essentially semicircular (see FIG. 3) and the two first recesses 11 ', 12' are essentially rectangular (see FIG. 3);
  • the two second recesses 21, 22 are essentially semicircular (see FIG. 3) and the two second recesses 21 ', 22' are essentially rectangular (see FIG.
  • FIGS. 4A to 4C and the fifth illustrated in FIGS. 5A to 5J Exemplary embodiments of a handling device according to the present invention differ from the first exemplary embodiment shown in FIGS. 1A to IH essentially in that neither reinforcing ribs / struts 70, 72, 74, 76, 78 nor a channel-shaped recess 90 with associated locking means 80 are provided.
  • the respective height of the guide holes 1121, 1222 is different in that the thickness of the two half-elements 10, 20 in the region of the guide hole 1121 is greater than the thickness of the two half-elements 10, 20 im Area of the other guide hole 1222 (see FIGS. 4C and 4C).
  • This has the advantage that, depending on the individual case, the pin-shaped fastening element can be introduced at different depths into the wall, into the door, into the ceiling or into the like.
  • the two half-elements 10, 20 accordingly have stepped sections and stepped areas with different thicknesses (cf. FIGS. 4B, 4C, 5B, 5C, 5E, 5F, 5H and 5J).
  • the first half element 10 has a first contact surface 130 which coincides with the parting plane 30 in the working position (see FIGS. 6 and 7) and in which three first continuous recesses 11, 12, 13 are provided, and the second half element 20 is a second contact surface 230 (see FIGS. 6 and 7) coinciding with the parting plane 30 in the working position and adjacent to the first contact surface 130 in the working position, in which three second continuous recesses 21 , 22, 23 are provided on.
  • one of the first recesses 11, 12, 13 and one of the second recesses 21, 22, 23 complement each other to a total of three continuous, essentially cylindrical guide holes 1121, 1222, 1323 (see FIGS. 8A and 9), the cylinder axis of the guide holes 1121, 1222, 1323 lies essentially in the parting plane 30 and the half elements 10, 20 with their respective contact surfaces 130, 230 can be moved from the working position into a release position by opening the guide hole 1121, 1222, 1323 (cf. Figures 6, 7, 8B and 10).
  • the handling device In the working position (cf. FIGS. 8A and 9), the handling device thus provides three through, essentially cylindrical guide holes 1121, 1222, 1323 for the pin-shaped fastening element, which act as a guide when inserting, i.e. when driving in the nail, when screwing in the hook or when screwing in the screw.
  • the handling device is countered by the person working with it by hand (see FIGS. 6, 7, 8A, 8B and 10), in which the person also holds the pin-shaped fastening element, or with pliers (see FIG. 9) the wall, against the door, against the ceiling or against the like, into which the pin-shaped fastening element is to be inserted.
  • the person then brings the pin-shaped fastening element into the wall, into the door, into the ceiling or into the like with a tool, for example with a hammer, with pliers or with a screwdriver.
  • the roughly cuboid half elements 10, 20 with their respective contact surfaces 130, 230 can be moved from the working position into a release position by opening the guide holes 1121, 1222, 1323 ( see Figures 6, 7 and 8B).
  • the two half-elements 10, 20, the respective contact surfaces 130, 230 of which coincide in the working position with the parting plane 30, are removed from this parting plane 30 and in this case give the pin-shaped introduced into the wall, in the door, in the ceiling or in the like Fastener free by opening the guide holes 1121, 1222, 1323.
  • the guide holes 1121, 1222, 1323 formed in the working position have a slightly conical shape.
  • Such a shape which tapers slightly conically in the direction of the wall, the door, the ceiling or the like, facilitates the introduction of the pin-shaped fastening element into the wall, into the door, into the ceiling or the like insofar as certain tolerances or inaccuracies in in relation to direction and / or accuracy when driving in, screwing in or screwing in can be compensated.
  • the guide holes 1121, 1222, 1323 have different cross sections. This makes it possible to use the handling device for pin-shaped fastening elements with different diameters, that is to say depending on the cross section of the pin-shaped part of the Fastening element uses the matching one of the three guide holes 1121, 1222, 1323 available in the working position. As a result, the range of use and the flexibility of the present handling device are significantly increased.
  • Handling device is assigned to the half-elements 10, 20 a holder 40, which has a trough-shaped recess 124 for receiving the half-elements 10, 20 in the working position, the recess 124 in its area assigned to the three guide holes 1121, 1222, 1323 a continuous, in has approximately slot-shaped recess 1240 for the pin-shaped fastening element.
  • the recess 1240 is necessary in this sixth embodiment (cf. FIG. 6) insofar as this recess 1240 enables the pin-shaped fastening element to pass through to the wall, door, ceiling or the like.
  • the holder 40 with the half elements 10, 20 accommodated in the recess 124 is held on the wall, on the door, on the ceiling or on the like, then the pin-shaped fastening element through one of the guide holes 1121, 1222, 1323 formed in the working position the wall, in the door, in the ceiling or in the like and then the holder 40 is lifted or removed so that the two half-elements 10, 20 with their respective contact surfaces 130, 230 while opening the guide hole 1121, 1222, 1323 can be moved from the working position into the release position.
  • Handling device is assigned to the half-elements 10, 20 a holder 40, which has a step-shaped recess 124 for receiving the half-elements 10, 20 in the working position, the recess 124 also having a continuous, in its area assigned to the three guide holes 1121, 1222, 1323 has approximately slot-shaped recess 1240 for the pin-shaped fastening element.
  • the holder 40 In order to enable the second half element 20 to be removed from the side during the transition from the working position to the release position (see FIG. 7) without having to lift or remove the holder 40, the holder 40 has no boundary wall on its right side in FIG. 7 , that is, the bracket 40 is freely accessible there.
  • the handling device is designed in the form of pliers.
  • This means that the handling device is designed in a form integrated with a holding device, which enables particularly simple and effective working with the handling device.
  • the compact design of this eighth exemplary embodiment (cf. FIGS. 8A and 8B) also makes it much easier to store the handling device, for example in a tool box or in a tool cabinet.
  • the two half-elements 10, 20 in the eighth exemplary embodiment according to FIGS. 8A and 8B are of cheek-shaped design.
  • the two half-elements 10, 20 lie in the working position (cf. FIG. 8A) with their contact surfaces 130, 230, comparable to the jaws of a pair of pliers, along the separating surface 30.
  • the two half-elements 10, 20 are connected to one another by a resetting device 120 in the form of a spring.
  • a resetting device 120 in the form of a spring.
  • the two half-elements 10, 20 can be moved against the restoring force of the reset device 120 from the working position (see FIG. 8A) to the release position (see FIG. 8B).
  • the spring is attached with one end to the first half element 10 and with its other end to the second half element 20.
  • the two half-elements 10, 20 are provided for receiving in a pliers-shaped holding device.
  • the pin-shaped fastening element is then introduced into the wall, the door, the ceiling or the like under the guidance of the handling device according to FIG. 9, the two become Half elements 10, 20 released by the two jaws of the pliers by the user, which corresponds to the so-called release position.
  • the first half element 10 is formed as part of a spirit level 50; the second half element 20 can be inserted or integrated into a corresponding recess in the spirit level 50 and can be removed again after the pin-shaped fastening element has been introduced in order to achieve the release position (cf. FIG. 10).
  • the partial training as or the partial integration into the spirit level 50 has the decisive advantage that the spirit level 50 in connection with the handling device according to FIG. 10 even inexperienced and / or inexperienced persons a straight, that is, for example, horizontal or vertical introduction of several allows pin-shaped fasteners on a line.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Connection Of Plates (AREA)
  • Automatic Assembly (AREA)
  • Container, Conveyance, Adherence, Positioning, Of Wafer (AREA)
  • Control And Other Processes For Unpacking Of Materials (AREA)

Abstract

La présente invention concerne un dispositif de manipulation utilisé pour le guidage d'éléments de fixation en forme de tige, tels que des clous, des crochets, des vis ou analogues. Ce dispositif comporte deux demi-éléments (10, 20) reposant l'un sur l'autre, le long d'un plan de séparation (30), dans une position de travail, le premier demi-élément (10) présentant une première surface d'appui (130) qui, en position de travail, coïncide avec le plan de séparation (30) et dans laquelle est ménagée une première cavité (11, 12, 13) traversante, et le second demi-élément (20) présentant une seconde surface d'appui (30) qui, en position de travail, coïncide avec le plan de séparation (30) et jouxte la première surface d'appui (130) et dans laquelle est ménagée au moins une seconde cavité (21, 22, 23) traversante. En position de travail, chaque fois une des premières cavités (11, 12, 13) et une des secondes cavités (21, 22, 23) se complètent pour former un trou de guidage (1121, 1222, 1323) traversant pour l'élément de fixation en forme de tige, l'axe dudit trou de guidage (1121, 1222, 1323) étant sensiblement parallèle au plan de séparation (30) ou se trouvant dans ledit plan de séparation (30), et les demi-éléments (10, 20) pouvant être déplacés, avec leur surface d'appui respective, de la position de travail à une position de libération, ce qui entraîne l'ouverture du trou de guidage (1121, 1222, 1323).
PCT/EP1999/010380 1998-12-23 1999-12-23 Dispositif de manipulation Ceased WO2000038888A1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
AT99964675T ATE275025T1 (de) 1998-12-23 1999-12-23 Handhabungsvorrichtung
EP99964675A EP1140434B1 (fr) 1998-12-23 1999-12-23 Dispositif de manipulation
DE59910411T DE59910411D1 (de) 1998-12-23 1999-12-23 Handhabungsvorrichtung
AU30436/00A AU3043600A (en) 1998-12-23 1999-12-23 Handling device

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE29822992.7 1998-12-23
DE29822992 1998-12-23
DE19935791A DE19935791A1 (de) 1998-12-23 1999-07-29 Handhabungsvorrichtung
DE19935791.9 1999-07-29

Publications (1)

Publication Number Publication Date
WO2000038888A1 true WO2000038888A1 (fr) 2000-07-06

Family

ID=26054404

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP1999/010380 Ceased WO2000038888A1 (fr) 1998-12-23 1999-12-23 Dispositif de manipulation

Country Status (5)

Country Link
EP (1) EP1140434B1 (fr)
AT (1) ATE275025T1 (fr)
AU (1) AU3043600A (fr)
DE (1) DE29922699U1 (fr)
WO (1) WO2000038888A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2381490A (en) * 2001-11-05 2003-05-07 Timothy Rudge Screw prop

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE105784C (fr) *
US2716750A (en) * 1953-07-03 1955-09-06 William B Biblis Tool for holding a fastener while starting it into work
GB1420157A (en) * 1973-06-19 1976-01-07 Lynn E Pin jig
US4201258A (en) * 1979-01-22 1980-05-06 The Stanley Works Nail holder
DE3911002A1 (de) * 1989-04-05 1990-10-11 Berg Hans Joachim Vorrichtung zum halten von naegeln, schrauben und dergleichen
US5375488A (en) * 1992-07-16 1994-12-27 Baitner; Yoav Nail holding and guiding device

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE105784C (fr) *
US2716750A (en) * 1953-07-03 1955-09-06 William B Biblis Tool for holding a fastener while starting it into work
GB1420157A (en) * 1973-06-19 1976-01-07 Lynn E Pin jig
US4201258A (en) * 1979-01-22 1980-05-06 The Stanley Works Nail holder
DE3911002A1 (de) * 1989-04-05 1990-10-11 Berg Hans Joachim Vorrichtung zum halten von naegeln, schrauben und dergleichen
US5375488A (en) * 1992-07-16 1994-12-27 Baitner; Yoav Nail holding and guiding device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2381490A (en) * 2001-11-05 2003-05-07 Timothy Rudge Screw prop

Also Published As

Publication number Publication date
ATE275025T1 (de) 2004-09-15
EP1140434A1 (fr) 2001-10-10
EP1140434B1 (fr) 2004-09-01
AU3043600A (en) 2000-07-31
DE29922699U1 (de) 2000-07-13

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