EP1563926B1 - Apparatus and method for feeding workpieces - Google Patents

Apparatus and method for feeding workpieces Download PDF

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Publication number
EP1563926B1
EP1563926B1 EP05100807A EP05100807A EP1563926B1 EP 1563926 B1 EP1563926 B1 EP 1563926B1 EP 05100807 A EP05100807 A EP 05100807A EP 05100807 A EP05100807 A EP 05100807A EP 1563926 B1 EP1563926 B1 EP 1563926B1
Authority
EP
European Patent Office
Prior art keywords
transport bar
transport
drive
bar
coupling
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.)
Not-in-force
Application number
EP05100807A
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German (de)
French (fr)
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EP1563926A1 (en
Inventor
Rolf Cisar
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.)
Schuler Automation GmbH and Co KG
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Schuler Automation GmbH and Co KG
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Publication date
Application filed by Schuler Automation GmbH and Co KG filed Critical Schuler Automation GmbH and Co KG
Publication of EP1563926A1 publication Critical patent/EP1563926A1/en
Application granted granted Critical
Publication of EP1563926B1 publication Critical patent/EP1563926B1/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/02Advancing work in relation to the stroke of the die or tool
    • B21D43/04Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work
    • B21D43/05Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work specially adapted for multi-stage presses
    • B21D43/057Devices for exchanging transfer bars or grippers; Idle stages, e.g. exchangeable
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T483/00Tool changing
    • Y10T483/16Tool changing with means to transfer work

Definitions

  • the invention relates to a device for the transport of workpieces according to the preamble of claim 1. It further relates to a method for removing or installing a tool and / or to change a transport bar using the device.
  • Such a device is from the DE 33 29 900 C2 known.
  • the DE 195 26 490 A1 discloses a device in which gripper rails can be moved out transversely to the transport direction on a sliding table from a machine frame for tool change.
  • Another device for the transport of workpieces is from the EP 0 633 077 A1 known.
  • two opposing transport bars are each connected at their end to a first drive.
  • Each of the transport bars is also movably mounted on two levers pivotable parallel to each other.
  • a displacement movement effected by the drive in an X or transport direction inevitably leads to a movement of the transport bar in an X and a Y direction.
  • Such movement of the transport bar together with a corresponding movement of a transport bar provided in opposing arrangement, serves to transfer workpieces along the X direction.
  • a feed device for the stepwise workpiece transport in presses known in which extend along the transport path two gripper rails or transport bars in opposing arrangement.
  • the gripper rails are moved toward each other via a gear transmission until the workpieces are held clamped. Subsequently, the gripper rails are moved in the transport direction and the workpieces set off by moving apart of the gripper rails at another location again. To always ensure a synchronous movement, the movements of the gear transmission are controlled by cams.
  • a device for feeding a platen press is known.
  • two mutually opposite Beschickholme or transport bars are each movable on carriage in the transport direction.
  • Each of the transport bars is movable in a direction perpendicular to the transport direction by means of a scissor-type drive.
  • a plurality of gripping means are provided at each of the transport bars.
  • the gripping devices have pairs of terminal strips that can be moved vertically relative to each other via a parallelogram linkage actuator.
  • the known device requires a variety of drive means.
  • drive means are required for moving the carriages in the transport direction, for moving the transport bars perpendicular to the transport direction and for moving the gripping devices.
  • the known transport devices are usually used for the stepwise transfer of workpieces from a pressing tool in a following in the transport direction further pressing tool.
  • the pressing tool is exchanged for a pressing tool for the production of workpieces with a different geometry
  • an adaptation of the provided on the transport bar gripper geometry may be required.
  • An expansion of one or both transport beams is expensive.
  • the transport bar must be disassembled from the drive and removed.
  • it is necessary to support components of the drive. Because of the considerable length of the transport bar it is also necessary to remove the transport beam in the X direction. The spatial conditions in this direction are often confined because there provided facilities for Maschinen Swisszu- and removal. This further complicates the installation or removal of the transport bar.
  • the object of the invention is to eliminate the disadvantages of the prior art.
  • a device for transporting workpieces is to be specified, which enables the simplest possible replacement of a tool.
  • the simplest possible method for removing or installing a tool and / or transport bar should be specified.
  • a device for transporting workpieces in an X-direction with at least one attachable to a frame of a processing device transport device which has at least one by means of a first drive in the X and Y direction movable transport bar, wherein the transport bar to its one end is releasably connected by means of a first clutch to the first drive, and wherein a pivoting device is provided, with which the transport bar is pivoted in the state solved by the first drive state.
  • the provision of a first clutch facilitates the separation of the transport bar from the first drive.
  • the transport bar in the released state can be swiveled quickly and easily so that a recorded in the processing device tool is readily accessible and can be replaced. After replacing the tool, the transport bar must only be pivoted back into its starting position and connected to the drive again by means of the coupling.
  • the pivoting device has a substantially in a Z-direction pivot axis. This allows easy to carry out horizontal pivoting of the transport bar.
  • the first transport bar is connected at its other end by means of a second coupling releasably connected to a second drive.
  • the provision of two clutches allows a relatively short design of the transport bar.
  • the pivoting device may be detachably attachable to the transport bar. It is usually only applied in practice when the transport bar is detached from the drives.
  • the transport bar can also be connected to a guided in a guide support beams by means of the second clutch.
  • the pivoting device may include means for pivotably holding the transporting beam in a state released by the drives.
  • the means for pivotally holding is in particular designed so that so that the moment of the transport bar is recorded. It may have a pin engaging in a receptacle provided on the transport bar.
  • the receptacle can be, for example, a device for retracting the pin, which is attached laterally to the transport bar. Instead of the pin of the transport bar, for example, in a U-shaped receptacle are received, which is pivotally mounted about an axis.
  • the transport bar is connected to the drive instead of the coupling by means of a, preferably detectable designed, hinge.
  • the transport bar is attached by means of a, preferably detectable ausgestaltenten, hinge and a coupling. In this case, the transport bar can be pivoted after releasing the first clutch. With a connection of the transport bar with a hinge, it is not necessary to completely detach the transport bar from the device.
  • the first and / or second drive on a Parallelogrammstelltrieb are provided for moving the transport bar.
  • excellent rigidity and thus a particularly precise motion control is achieved. Apart from that, it is no longer necessary to take any measures for supporting components of the drive in a disassembly of the transport bar when using the proposed Parallelogrammstelltriebs.
  • the Parallelogrammstelltrieb expediently has in opposite arrangement, a first and a second coupling element, which are connected via at least two parallel mounted handlebars movable together.
  • the pivot bearings of the handlebars are fixedly attached to the coupling elements.
  • the links pivot in each case by the same angular amount.
  • An enclosed by the links and the coupling elements surface forms a parallelogram.
  • Coupled element is to be understood in the context of the present invention in general terms. It can be one act rigid beam that can be connected to the transport bar or a linear motion device. At a the transport bar facing the end of the coupling element, the first, possibly second coupling is provided for connection to the transport bar.
  • the coupling is expediently designed so that a rigid connection between the first coupling element and the transport bar can be produced.
  • the first coupling element is attached to a linear movement device or is part of the same.
  • the first coupling element attached to a linear movement device or a component thereof it is advantageously achieved that by moving the linear movement device in the X direction alone, a movement of the transport beam in the X and Y directions can be achieved.
  • the first coupling element may form a first sliding element of the linear movement device.
  • the linear movement device is expediently attached to a frame. This simplifies the construction of the device.
  • drive devices can be arranged stationarily on the frame.
  • a “linear movement device” is understood to mean a device by means of which an object is connected to another object in such a way that a movement of the two objects relative to one another inevitably takes place along a straight line.
  • a sliding element can be slidably provided on a straight rail.
  • the sliding elements can also be performed in linear sliding or rolling bearings.
  • the second coupling element can be connectable to the transport bar by means of the first and / or second coupling.
  • the first coupling element is either part a mounted on the frame first linear motion device or it is a part of the same.
  • the linear movement device has a second sliding element, which is movable perpendicularly to the direction of movement of the first sliding element and on which the first sliding element is mounted.
  • the first and / or second sliding element may be a carriage guided on a linear guide.
  • the first and the second sliding element are designed in the manner of a cross slide. This allows movement of the transport bar in the X, Y and Z directions.
  • At least one first drive device for moving the first and / or second sliding element, preferably in the Z direction is provided.
  • at least one second drive device can be provided for moving the first and / or second sliding element, preferably in the X direction. It can also be provided for the movement of each of the second sliding elements, a separate second drive means.
  • This can be carried out in a simple manner by a suitable control of the drive device / s a predetermined movement of the transport bar both in the X and in the Y direction.
  • the movement can usefully be controlled by means of a process computer provided for controlling the drive device (s).
  • the linear movement devices including the drive device (s) can remain unchanged.
  • the length of the transport bar is dimensioned so that it is in an XY plane between Pillars of the processing device is pivotable. This allows pivoting one end of the transport bar in a direction transverse to the X direction. It can thus be achieved a particularly simple change of a tool.
  • the transport bar can be provided in the X and Y direction movably held further transport bar.
  • the further transport bar may be formed according to the transport bar.
  • at least one provided for movement of the further transport bar drive can be designed according to the first or second drive.
  • the second transport bar is provided with two drives and formed in mirror image to the first transport bar.
  • the pivoting device is in particular designed so that it can be releasably attached to the transport bar.
  • the attachment of the pivoting device is advantageously carried out in a remote from the tool starting position of the transport bar.
  • the pivoting of the separate from the first drive transport bar facilitates and significantly accelerates a removal or installation of the tool and / or the transport bar.
  • the Fig. 1 and 2 show a suitable for producing a transport device according to the invention drive module AM.
  • a first carriage 1 is z. B. connected via a toothed belt 2 with toothed discs 3.
  • One of the two toothed disks 3 is drivingly connected to a first electric motor 4.
  • the first carriage 1 is guided in an X-rail extending in the X-direction (not shown here), which extends over the distance formed between the toothed disks 3.
  • On the first carriage 1 extending Z-rails 5 are mounted in the Z direction, in which a second carriage 6 is guided.
  • the first 1 and the second carriage 6 form a cross slide.
  • On the second carriage 6 pivotally arm 7 are attached.
  • the second carriage 6 fulfills the function of a coupling element coupling the two links 7 in the X direction.
  • the links 7 are accommodated at one end in the first carriage 8 fixedly mounted on the second carriage 6.
  • the first link 7 are held in a fixedly mounted on a second coupling element 9 second pivot bearings 10 pivotally.
  • Fig. 2 In particular, the carriages 1, 6, the first links 7 and the second coupling element 9 are shown in two different positions.
  • the second coupling element 9, the link 7 and the second carriage 6 form a Parallelogrammstelltrieb PL. It is of course also conceivable that the first coupling element forms a separate component, which is mounted on the second carriage 6.
  • the second carriage 6 is slidably mounted in the horizontal direction on a horizontally extending carrier
  • the carrier 11 is vertically slidably guided in Z-direction in Z-guides 12.
  • a second electric motor 13 serves for vertical movement of the carrier 11.
  • the Fig. 3 and 4 show a first device. It is a transport device which has a first drive module AM1 and a second drive module AM2.
  • the drive modules AM1, AM2 correspond to those in the Fig. 1 and 2 shown drive module AM.
  • the first drive module AM1 has a first parallelogram drive PL1 and the second drive module AM2 has a second parallelogram drive PL2.
  • the drive modules AM1, AM2 are mounted on the frame 14 of a press P.
  • the first coupling elements 9 of the drive modules AM1, AM2 are connected to a transport bar 15.
  • gripping means 16 may be formed as active gripping elements. They serve to grasp workpieces 17. Unless - as in Fig. 5 is shown - two transport bars 15 are provided in mutually opposite arrangement, the gripping means 16 may also be formed as a passive gripping elements for clamping holding workpieces 17.
  • the reference symbol K denotes couplings for connecting the transport bar 15 to the coupling element 9.
  • the couplings K can be designed in the form of a screw connection.
  • the Fig. 5a to 5d show the sequence of movement of a first device.
  • the drive modules AM1, AM2 are mounted on the outside of the frame 14 of the press P.
  • the transport bar 15 is also provided here with gripping means 16.
  • a transport of the workpieces in the transport direction is also possible here by a suitable coordinated movement of the first carriage 1 in the X direction.
  • two transport devices T1 and T2 are provided. Their drive modules AM1, AM2 or AM21, AM22 are in turn mounted on the outside of the frame 14.
  • the transport bar 15 and another transport bar 18 are arranged opposite each other in a plane.
  • the transport bars 15 and 18 are here in turn provided with gripping means 16.
  • the gripping devices 16 are designed as so-called passive gripping elements, ie they are designed in their shape corresponding to the shape of the workpieces 17 to be transported.
  • the workpieces 17 are gripped by two gripping elements, which are moved toward one another by means of the transport bars 15, 18.
  • the Fig. 8a to 8d show the sequence of movements when using two inventive transport devices T1, T2.
  • Fig. 7 shows a schematic diagram of a third device.
  • second carriage 19 are slidably held on the transport bar 15.
  • the carriage 19 fulfills the function of the second coupling element 9.
  • the links 7 are here in another Coupling element 20 pivotally mounted, which is mounted on the frame 14.
  • the coupling element 20 can be movably mounted in the Z direction.
  • the further coupling element 20, the handlebar 7 and the second carriage 19 in turn here form a Parallelogrammstelltrieb PL.
  • the movement of the transport bar 15 is not effected by an active movement of the second carriages 19, but by an external drive device 21 with which the transport bar 15 is movable in both the X and Y directions.
  • the outer drive device 21 has a slidably guided in the second carriage coupling bar 23, which in turn is releasably connected via the coupling K with the transport bar 15.
  • the second carriages 19 each have a drive device for movement on the transport bar 15.
  • An undesirable deflection of the transport bar 15 is also substantially reduced by its inclusion by means of the Parallelogramm Monel invention PL.
  • Fig. 8a again shows a schematic diagram of the arrangement of the handlebars 7 of the first device.
  • Fig. 8b an alternative arrangement of the handlebar 7 is reproduced.
  • the links 7 are arranged so that they are pivoted in a movement of the transport bar 15 in opposite directions.
  • Fig. 9a to 9d show again the sequence of movements in the first device (see also Fig. 5a to 5d ).
  • Fig. 10 shows a plan view of a fourth device.
  • first AM1 and second drive modules AM2 are mounted on the frame 14 of a press P in opposite directions.
  • the first AM1 and second drive modules AM2 each have the second coupling element 9, which can be connected to the transport bar 15 by means of the coupling K.
  • the coupling K to each other on corresponding coupling elements.
  • the coupling elements could form a clamping, latching or plug connection.
  • one of the coupling elements may be formed as a protrusion provided with an undercut extending from the second coupling element 9, which projection can be inserted into a corresponding recess provided on the transporting beam 15.
  • the mutually corresponding coupling elements may in particular also have conical or bevelled surfaces, so that thus a rigid connection between the second coupling element 9 and the transport bar 15 can be produced.
  • the transport bar 15 is formed in its length smaller than a distance A, which is formed in an X direction between two frames 14 forming columns. Out Fig. 10 but it can also be seen that the transport bar 15 can be pivoted between the columns even if its length is equal to or to some extent greater than the distance A.
  • the transport bars 15 are in the in Fig. 10 shown fourth device separated from the second coupling elements 9.
  • pin 22 are retracted.
  • the pins 22 are part of a pivoting device not shown here in detail.
  • the pins 22 can be raised by means of the pivoting device, for example, hydraulically, pneumatically and / or electrically and retracted into the provided in the transport bar 15 cylindrical recesses.
  • the function of the device is as follows:
  • a generally designated by the reference W tool is first by means of a pivoting device of the pin 22 in the corresponding cylindrical Recess retracted on the transport bar 15.
  • the recess suitable for receiving the pin 22 may also be provided in a device, for example, attached laterally to the transport bar (not shown here).
  • the provision of such a transport bar separately mounted device ensures a particularly high rigidity of the transport bar 15.
  • the second coupling elements 9 of the drive modules AM1 and AM2 are released by means of the couplings K from the transport bar 15.
  • the second coupling elements 9 can be moved away from the transport bar 15 by means of the drive modules AM1 and AM2.
  • the transport bar 15 can be pivoted about the pin 22 in a direction perpendicular to the X direction.
  • the pivoting device is designed such that it absorbs the moment exerted by the transport bar.
  • the tool W is released and can be changed.
  • both opposite transport beams 15 can be pivoted away from the tool W. This allows an exchange of the tool W z. B. by means of a translation table.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manipulator (AREA)
  • Reciprocating Conveyors (AREA)
  • Feeding Of Workpieces (AREA)
  • Load-Engaging Elements For Cranes (AREA)
  • Automatic Assembly (AREA)

Abstract

A machine tool has a frame (14) and a mechanical handling unit (T1, T2) that moves work-pieces in the X-plane. A transport beam (15) is moved through the X and Y planes by drive systems (AM1, AM2), from which it is detachable (K) at one end. The beam has a swivel assembly which is free to operate on detachment from the drive.

Description

Die Erfindung betrifft eine Vorrichtung zum Transport von Werkstücken gemäß dem Oberbegriff des Anspruchs 1. Sie betrifft ferner ein Verfahren zum Aus- oder Einbau eines Werkzeugs und/oder zum Wechsel eines Transportbalkens unter Verwendung der Vorrichtung.The invention relates to a device for the transport of workpieces according to the preamble of claim 1. It further relates to a method for removing or installing a tool and / or to change a transport bar using the device.

Eine solche Vorrichtung ist aus der DE 33 29 900 C2 bekannt. Zum Werkzeugwechsel ist es bei der bekannten Vorrichtung erforderlich, den Transportbalken insgesamt auszubauen und mit einer gesonderten Vorrichtung aus der Presse seitlich herauszufahren.Such a device is from the DE 33 29 900 C2 known. For tool change, it is necessary in the known device to expand the transport bar as a whole and drive out laterally with a separate device from the press.

Die DE 195 26 490 A1 offenbart eine Vorrichtung, bei der Greiferschienen quer zur Transportrichtung auf einem Schiebetisch aus einem Maschinenrahmen zum Werkzeugwechsel herausgefahren werden können.The DE 195 26 490 A1 discloses a device in which gripper rails can be moved out transversely to the transport direction on a sliding table from a machine frame for tool change.

Eine weitere Vorrichtung zum Transport von Werkstücken ist aus der EP 0 633 077 A1 bekannt. Dabei sind zwei einander gegenüberliegende Transportbalken jeweils an ihrem Ende mit einem ersten Antrieb verbunden. Jeder der Transportbalken ist ferner bewegbar an zwei parallel zueinander verschwenkbaren Hebeln angebracht. Eine durch den Antrieb in einer X- bzw. Transportrichtung bewirkte Verschiebebewegung führt zwangsläufig zu einer Bewegung des Transportbalkens in einer X- und einer Y-Richtung. Eine solche Bewegung des Transportbalkens dient zusammen mit einer korrespondierenden Bewegung eines in gegenüberliegender Anordnung vorgesehenen Transportbalkens zum Transfer von Werkstücken entlang der X-Richtung.Another device for the transport of workpieces is from the EP 0 633 077 A1 known. In this case, two opposing transport bars are each connected at their end to a first drive. Each of the transport bars is also movably mounted on two levers pivotable parallel to each other. A displacement movement effected by the drive in an X or transport direction inevitably leads to a movement of the transport bar in an X and a Y direction. Such movement of the transport bar, together with a corresponding movement of a transport bar provided in opposing arrangement, serves to transfer workpieces along the X direction.

Aus der DE 28 52 929 C2 ist eine Vorschubeinrichtung zum schrittweisen Werkstücktransport in Pressen bekannt, bei der sich längs des Transportwegs zwei Greiferschienen bzw. Transportbalken in einander gegenüberliegender Anordnung erstrekken. Zum Greifen der Werkstücke werden die Greiferschienen über ein Zahnradgetriebe aufeinander zu bewegt, bis die Werkstücke klemmend gehalten sind. Anschließend werden die Greiferschienen in Transportrichtung bewegt und die Werkstücke durch Auseinanderbewegen der Greiferschienen an einem anderen Ort wieder abgesetzt. Um stets einen synchronen Bewegungsablauf sicherzustellen, werden die Bewegungen des Zahnradgetriebes über Kurvenscheiben gesteuert.From the DE 28 52 929 C2 is a feed device for the stepwise workpiece transport in presses known, in which extend along the transport path two gripper rails or transport bars in opposing arrangement. For gripping the workpieces, the gripper rails are moved toward each other via a gear transmission until the workpieces are held clamped. Subsequently, the gripper rails are moved in the transport direction and the workpieces set off by moving apart of the gripper rails at another location again. To always ensure a synchronous movement, the movements of the gear transmission are controlled by cams.

Aus der DE 28 47 273 A1 ist eine Vorrichtung zum Beschicken einer Plattenpresse bekannt. Dabei sind zwei einander gegenüberliegende Beschickholme bzw. Transportbalken jeweils auf Schlitten in Transportrichtung bewegbar. Jeder der Transportbalken ist mittels eines Scherenstelltriebs in eine Richtung senkrecht zur Transportrichtung bewegbar. An jedem der Transportbalken sind mehrere Greifeinrichtungen vorgesehen. Die Greifeinrichtungen weisen Klemmleistenpaare auf, die über Parallelogrammlenkerstelltriebe vertikal gegeneinander bewegbar sind. - Die bekannte Vorrichtung erfordert eine Vielzahl von Antriebseinrichtungen. So sind Antriebseinrichtungen zur Bewegung der Schlitten in Transportrichtung, zur Bewegung der Transportbalken senkrecht zur Transportrichtung sowie zur Bewegung der Greifeinrichtungen erforderlich.From the DE 28 47 273 A1 a device for feeding a platen press is known. In this case, two mutually opposite Beschickholme or transport bars are each movable on carriage in the transport direction. Each of the transport bars is movable in a direction perpendicular to the transport direction by means of a scissor-type drive. At each of the transport bars a plurality of gripping means are provided. The gripping devices have pairs of terminal strips that can be moved vertically relative to each other via a parallelogram linkage actuator. - The known device requires a variety of drive means. Thus, drive means are required for moving the carriages in the transport direction, for moving the transport bars perpendicular to the transport direction and for moving the gripping devices.

Die bekannten Transportvorrichtungen dienen üblicherweise zum schrittweisen Transfer von Werkstücken von einem Presswerkzeug in ein in Transportrichtung folgendes weiteres Presswerkzeug. Im Falle eines Wechsels der Presswerkzeuge ist es erforderlich, einen der Transportbalken auszubauen. Sofern das Presswerkzeug gegen ein Presswerkzeug zur Herstellung von Werkstücken mit einer abweichenden Geometrie ausgetauscht wird, kann eine Anpassung der an den Transportbalken vorgesehenen Greifergeometrie erforderlich sein. Dazu kann es notwendig sein, beide Transportbalken gegen Transportbalken mit einer geeigneten Greifergeometrie auszutauschen. Ein Ausbau eines oder beider Transportbalken ist aufwändig. Dazu muss der Transportbalken vom Antrieb demontiert und entfernt werden. Ferner ist es erforderlich Bestandteile des Antriebs abzustützen. Wegen der erheblichen Länge des Transportbalkens ist es außerdem notwendig, den Transportbalken in X-Richtung auszubauen. Die räumlichen Verhältnisse in dieser Richtung sind wegen dort vorgesehener Einrichtungen zur Werkstückzu- und -abfuhr häufig beengt. Das erschwert weiter den Ein- oder Ausbau des Transportbalkens.The known transport devices are usually used for the stepwise transfer of workpieces from a pressing tool in a following in the transport direction further pressing tool. In the case of a change of the pressing tools, it is necessary to remove one of the transport beams. If the pressing tool is exchanged for a pressing tool for the production of workpieces with a different geometry, an adaptation of the provided on the transport bar gripper geometry may be required. For this purpose, it may be necessary to exchange both transport beams for transport beams with a suitable gripper geometry. An expansion of one or both transport beams is expensive. For this purpose, the transport bar must be disassembled from the drive and removed. Furthermore, it is necessary to support components of the drive. Because of the considerable length of the transport bar it is also necessary to remove the transport beam in the X direction. The spatial conditions in this direction are often confined because there provided facilities for Werkstückzu- and removal. This further complicates the installation or removal of the transport bar.

Aufgabe der Erfindung ist es, die Nachteile nach dem Stand der Technik zu beseitigen. Es soll insbesondere eine Vorrichtung zum Transport von Werkstücken angegeben werden, die einen möglichst einfachen Wechsel eines Werkzeugs ermöglicht. Nach einem weiteren Ziel der Erfindung soll ein möglichst einfaches Verfahren zum Aus- oder Einbau eines Werkzeugs und/oder Transportbalkens angegeben werden.The object of the invention is to eliminate the disadvantages of the prior art. In particular, a device for transporting workpieces is to be specified, which enables the simplest possible replacement of a tool. According to a further object of the invention, the simplest possible method for removing or installing a tool and / or transport bar should be specified.

Diese Aufgabe wird durch die Merkmale der Anspruchs 1 und 31 gelöst. Zweckmäßige Ausgestaltungen ergeben sich aus den Merkmalen der Ansprüche 2 bis 30 und 32 bis 34.This object is solved by the features of claims 1 and 31. Advantageous embodiments result from the features of claims 2 to 30 and 32 to 34.

Nach Maßgabe der Erfindung ist eine Vorrichtung zum Transport von Werkstücken in einer X-Richtung mit mindestens einer an einem Gestell einer Bearbeitungsvorrichtung anbringbaren Transporteinrichtung vorgesehen, welche mindestens einen mittels eines ersten Antriebs in X- und Y-Richtung bewegbaren Transportbalken aufweist, wobei der Transportbalken an seinem einen Ende mittels einer ersten Kupplung lösbar mit dem ersten Antrieb verbunden ist, und wobei eine Schwenkvorrichtung vorgesehen ist, mit welcher der Transportbalken in vom ersten Antrieb gelöstem Zustand verschwenkbar ist. - Das Vorsehen einer ersten Kupplung erleichtert die Trennung des Transportbalkens vom ersten Antrieb. Mittels der erfindungsgemäß weiterhin vorgesehenen Schwenkvorrichtung kann der Transportbalken im gelösten Zustand schnell und einfach so verschwenkt werden, dass ein in der Bearbeitungsvorrichtung aufgenommenes Werkzeug ohne weiteres zugänglich ist und ausgetauscht werden kann. Nach dem Austausch des Werkzeugs muss der Transportbalken lediglich in seine Ausgangslage zurückverschwenkt und mittels der Kupplung wieder mit dem Antrieb verbunden werden.According to the invention, a device for transporting workpieces in an X-direction with at least one attachable to a frame of a processing device transport device is provided, which has at least one by means of a first drive in the X and Y direction movable transport bar, wherein the transport bar to its one end is releasably connected by means of a first clutch to the first drive, and wherein a pivoting device is provided, with which the transport bar is pivoted in the state solved by the first drive state. - The provision of a first clutch facilitates the separation of the transport bar from the first drive. By means of the inventively further provided pivoting device, the transport bar in the released state can be swiveled quickly and easily so that a recorded in the processing device tool is readily accessible and can be replaced. After replacing the tool, the transport bar must only be pivoted back into its starting position and connected to the drive again by means of the coupling.

Bei einer geeigneten Ausgestaltung des Transportbalkens und der Schwenkvorrichtung ist es insbesondere möglich, den Transportbalken in eine Richtung quer zur X-Richtung zu verschwenken. Damit erübrigt sich der nach dem Stand der Technik schwierige und zeitraubende Ausbau des Transportbalkens entlang der Transportrichtung.In a suitable embodiment of the transport bar and the pivoting device, it is particularly possible to pivot the transport bar in a direction transverse to the X direction. This eliminates the difficulty of the prior art and time-consuming expansion of the transport bar along the transport direction.

Nach einer vorteilhaften Ausgestaltung weist die Schwenkvorrichtung eine im Wesentlichen in einer Z-Richtung verlaufende Schwenkachse auf. Das ermöglicht ein leicht auszuführendes horizontales Verschwenken des Transportbalkens.According to an advantageous embodiment, the pivoting device has a substantially in a Z-direction pivot axis. This allows easy to carry out horizontal pivoting of the transport bar.

Nach einer in der Praxis besonders bewährten Ausgestaltung ist der erste Transportbalken an seinem anderen Ende mittels einer zweiten Kupplung lösbar mit einem zweiten Antrieb verbunden. Das Vorsehen zweier Kupplungen ermöglicht eine relativ kurze Ausgestaltung des Transportbalkens. Außerdem kann damit der Transportbalken schnell und einfach von den beiden Antrieben getrennt werden. In diesem Fall kann die Schwenkvorrichtung lösbar am Transportbalken anbringbar sein. Sie wird in der Praxis üblicherweise erst dann angebracht, wenn der Transportbalken von den Antrieben gelöst ist. Anstelle des zweiten Antriebs kann der Transportbalken auch mit einem in einer Führung geführten Stützbalken mittels der zweiten Kupplung verbunden sein.After a particularly proven embodiment in practice, the first transport bar is connected at its other end by means of a second coupling releasably connected to a second drive. The provision of two clutches allows a relatively short design of the transport bar. In addition, so that the transport bar can be quickly and easily separated from the two drives. In this case, the pivoting device may be detachably attachable to the transport bar. It is usually only applied in practice when the transport bar is detached from the drives. Instead of the second drive, the transport bar can also be connected to a guided in a guide support beams by means of the second clutch.

Die Schwenkvorrichtung kann ein Mittel zum schwenkbaren Halten des Transportbalkens in einem von den Antrieben gelösten Zustand aufweisen. Das Mittel zum schwenkbaren Halten ist insbesondere so ausgeführt, dass damit auch das Moment des Transportbalkens aufgenommen wird. Es kann einen in eine am Transportbalken vorgesehene Aufnahme eingreifenden Zapfen aufweisen. Bei der Aufnahme kann es sich beispielsweise um eine seitlich am Transportbalken angebrachte Einrichtung zum Einfahren des Zapfens handeln. Anstelle des Zapfens kann der Transportbalken beispielsweise auch in einer U-förmigen Aufnahme aufgenommen werden, welche schwenkbar um eine Achse gelagert ist.The pivoting device may include means for pivotably holding the transporting beam in a state released by the drives. The means for pivotally holding is in particular designed so that so that the moment of the transport bar is recorded. It may have a pin engaging in a receptacle provided on the transport bar. The receptacle can be, for example, a device for retracting the pin, which is attached laterally to the transport bar. Instead of the pin of the transport bar, for example, in a U-shaped receptacle are received, which is pivotally mounted about an axis.

Nach einer Ausgestaltung kann es auch sein, dass der Transportbalken anstelle der Kupplung mittels eines, vorzugsweise feststellbar ausgestalteten, Scharniers mit dem Antrieb verbunden ist. Ferner ist es auch denkbar, dass der Transportbalken mittels eines, vorzugsweise feststellbar ausgestaltenten, Scharniers und einer Kupplung angebracht ist. In diesem Fall kann der Transportbalken nach dem Lösen der ersten Kupplung verschwenkt werden. Bei einer Verbindung des Transportbalkens mit einem Scharnier es nicht erforderlich, den Transportbalken vollständig von der Vorrichtung zu lösen.According to one embodiment, it may also be that the transport bar is connected to the drive instead of the coupling by means of a, preferably detectable designed, hinge. Furthermore, it is also conceivable that the transport bar is attached by means of a, preferably detectable ausgestaltenten, hinge and a coupling. In this case, the transport bar can be pivoted after releasing the first clutch. With a connection of the transport bar with a hinge, it is not necessary to completely detach the transport bar from the device.

Nach einer weiteren vorteilhaften Ausgestaltung weist der erste und/oder zweite Antrieb einen Parallelogrammstelltrieb auf. Gerade wenn zwei Parallelogrammstelltriebe zur Bewegung des Transportbalkens vorgesehen sind, wird eine hervorragende Steifigkeit und damit eine besonders präzise Bewegungsführung erreicht. Abgesehen davon ist es bei einer Verwendung des vorgeschlagenen Parallelogrammstelltriebs nicht mehr erforderlich, bei einer Demontage des Transportbalkens irgendwelche Maßnahmen zum Abstützen von Bestandteilen des Antriebs zu treffen.According to a further advantageous embodiment, the first and / or second drive on a Parallelogrammstelltrieb. Especially when two Parallelogrammstelltriebe are provided for moving the transport bar, excellent rigidity and thus a particularly precise motion control is achieved. Apart from that, it is no longer necessary to take any measures for supporting components of the drive in a disassembly of the transport bar when using the proposed Parallelogrammstelltriebs.

Der Parallelogrammstelltrieb weist zweckmäßigerweise in gegenüberliegender Anordnung ein erstes und ein zweites Koppelelement auf, welche über zumindest zwei parallel angebrachte Lenker bewegbar miteinander verbunden sind. Die Schwenklager der Lenker sind ortsfest an den Koppelelementen angebracht. Bei einer Bewegung der Koppelelemente relativ zueinander verschwenken die Lenker jeweils um denselben Winkelbetrag. Eine von den Lenkern und den Koppelelementen umschlossene Fläche bildet ein Parallelogramm.The Parallelogrammstelltrieb expediently has in opposite arrangement, a first and a second coupling element, which are connected via at least two parallel mounted handlebars movable together. The pivot bearings of the handlebars are fixedly attached to the coupling elements. During a movement of the coupling elements relative to each other, the links pivot in each case by the same angular amount. An enclosed by the links and the coupling elements surface forms a parallelogram.

Der Begriff "Koppelelement" ist im Sinne der vorliegenden Erfindung allgemein zu verstehen. Es kann sich dabei um einen starren Balken handeln, der mit dem Transportbalken oder einer Linearbewegungseinrichtung verbunden sein kann. An einem dem Transportbalken zugewandten Ende des Koppelelements ist die erste, ggf. zweite Kupplung zur Verbindung mit dem Transportbalken vorgesehen. Die Kupplung ist zweckmäßigerweise so ausgeführt, dass eine starre Verbindung zwischen dem ersten Koppelelement und dem Transportbalken herstellbar ist.The term "coupling element" is to be understood in the context of the present invention in general terms. It can be one act rigid beam that can be connected to the transport bar or a linear motion device. At a the transport bar facing the end of the coupling element, the first, possibly second coupling is provided for connection to the transport bar. The coupling is expediently designed so that a rigid connection between the first coupling element and the transport bar can be produced.

Als vorteilhaft hat es sich erwiesen, dass das erste Koppelelement an einer Linearbewegungseinrichtung angebracht oder Bestandteil derselben ist. Indem das erste Koppelelement an einer Linearbewegungseinrichtung angebracht oder Bestandteil desselben ist, wird vorteilhafterweise erreicht, dass durch eine Bewegung der Linearbewegungseinrichtung allein in X-Richtung, eine Bewegung des Transportbalkens in X- und in Y-Richtung erreicht werden kann.It has proved to be advantageous that the first coupling element is attached to a linear movement device or is part of the same. By the first coupling element attached to a linear movement device or a component thereof, it is advantageously achieved that by moving the linear movement device in the X direction alone, a movement of the transport beam in the X and Y directions can be achieved.

Das erste Koppelelement kann ein erstes Gleitelement der Linearbewegungseinrichtung bilden. Die Linearbewegungseinrichtung ist zweckmäßigerweise an einem Gestell angebracht. Das vereinfacht die Konstruktion der Vorrichtung. Es können insbesondere Antriebseinrichtungen ortsfest am Gestell angeordnet werden.The first coupling element may form a first sliding element of the linear movement device. The linear movement device is expediently attached to a frame. This simplifies the construction of the device. In particular, drive devices can be arranged stationarily on the frame.

Unter einer "Linearbewegungseinrichtung" wird eine Einrichtung verstanden, mittels derer ein Gegenstand mit einem weiteren Gegenstand so verbunden ist, dass eine Bewegung der beiden Gegenstände relativ zueinander zwangsläufig entlang einer Geraden erfolgt. Dazu kann beispielsweise ein Gleitelement gleitbar auf einer geraden Schiene vorgesehen sein. Die Gleitelemente können aber auch in linearen Gleit- oder Wälzlagern geführt sein.A "linear movement device" is understood to mean a device by means of which an object is connected to another object in such a way that a movement of the two objects relative to one another inevitably takes place along a straight line. For this purpose, for example, a sliding element can be slidably provided on a straight rail. The sliding elements can also be performed in linear sliding or rolling bearings.

Das zweite Koppelelement kann mittels der ersten und/oder zweiten Kupplung mit dem Transportbalken verbindbar sein. In dieser Ausgestaltung ist das erste Koppelelement entweder Bestandteil einer am Gestell angebrachten ersten Linearbewegungseinrichtung oder es ist ein Bestandteil desselben.The second coupling element can be connectable to the transport bar by means of the first and / or second coupling. In this embodiment, the first coupling element is either part a mounted on the frame first linear motion device or it is a part of the same.

Nach einer weiteren vorteilhaften Ausgestaltung weist die Linearbewegungseinrichtung ein senkrecht zur Bewegungsrichtung des ersten Gleitelements bewegbares zweites Gleitelement auf, an welchem das erste Gleitelement angebracht ist. Beim ersten und/oder zweiten Gleitelement kann es sich um einen auf einer Linearführung geführten Schlitten handeln. Zweckmäßigerweise sind das erste und das zweite Gleitelement nach Art eines Kreuzschlittens ausgebildet. Das ermöglicht eine Bewegung des Transportbalkens in X-, Y- und Z-Richtung.According to a further advantageous embodiment, the linear movement device has a second sliding element, which is movable perpendicularly to the direction of movement of the first sliding element and on which the first sliding element is mounted. The first and / or second sliding element may be a carriage guided on a linear guide. Conveniently, the first and the second sliding element are designed in the manner of a cross slide. This allows movement of the transport bar in the X, Y and Z directions.

Nach einer weiteren Ausgestaltung ist mindestens eine erste Antriebsvorrichtung zur Bewegung des ersten und/oder zweiten Gleitelements, vorzugsweise in Z-Richtung, vorgesehen. Ferner kann mindestens eine zweite Antriebseinrichtung zur Bewegung des ersten und/oder zweiten Gleitelements, vorzugsweise in X-Richtung, vorgesehen sein. Es kann auch zur Bewegung jedes der zweiten Gleitelemente eine separate zweite Antriebseinrichtung vorgesehen sein. Damit kann auf einfache Weise durch eine geeignete Steuerung der Antriebseinrichtung/en eine vorgegebene Bewegung des Transportbalkens sowohl in X- als auch in Y-Richtung ausgeführt werden. Die Bewegung kann zweckmäßigerweise mittels eines zur Steuerung der Antriebseinrichtung/en vorgesehenen Prozessrechners gesteuert werden. Das ermöglicht eine besonders einfache Anpassung der erfindungsgemäßen Vorrichtung an die verschiedensten Geometrien von Bearbeitungsvorrichtungen, z. B. Pressen. Sie eignet sich zum Nachrüsten bestehender Bearbeitungsvorrichtungen. Zur Anpassung an verschiedene Geometrien ist es erfindungsgemäß lediglich erforderlich, die Länge des Transportbalkens geeignet zu wählen. Die Linearbewegungseinrichtungen samt Antriebseinrichtung/en können unverändert bleiben.According to a further embodiment, at least one first drive device for moving the first and / or second sliding element, preferably in the Z direction, is provided. Furthermore, at least one second drive device can be provided for moving the first and / or second sliding element, preferably in the X direction. It can also be provided for the movement of each of the second sliding elements, a separate second drive means. This can be carried out in a simple manner by a suitable control of the drive device / s a predetermined movement of the transport bar both in the X and in the Y direction. The movement can usefully be controlled by means of a process computer provided for controlling the drive device (s). This allows a particularly simple adaptation of the device according to the invention to the various geometries of processing devices, eg. B. pressing. It is suitable for retrofitting existing processing devices. To adapt to different geometries, it is according to the invention only necessary to choose the length of the transport bar suitable. The linear movement devices including the drive device (s) can remain unchanged.

Nach einer weiteren Ausgestaltung ist die Länge des Transportbalkens so bemessen, dass er in einer X-Y-Ebene zwischen Säulen der Bearbeitungsvorrichtung verschwenkbar ist. Das ermöglicht ein Herausschwenken eines Ende des Transportbalkens in eine Richtung quer zur X-Richtung. Es kann damit ein besonders einfacher Wechsel eines Werkzeugs erreicht werden.According to a further embodiment, the length of the transport bar is dimensioned so that it is in an XY plane between Pillars of the processing device is pivotable. This allows pivoting one end of the transport bar in a direction transverse to the X direction. It can thus be achieved a particularly simple change of a tool.

Gegenüberliegend dem Transportbalken kann ein in X- und Y-Richtung bewegbar gehaltener weiterer Transportbalken vorgesehen sein. Der weitere Transportbalken kann entsprechend dem Transportbalken ausgebildet sein. Auch kann zumindest ein zur Bewegung des weiteren Transportbalkens vorgesehener Antrieb entsprechend dem ersten oder zweiten Antrieb ausgebildet sein. Zweckmäßigerweise ist der zweite Transportbalken mit zwei Antrieben versehen und spiegelbildlich zum ersten Transportbalken ausgebildet. Mit der vorgeschlagenen Anordnung können die Werkstücke klemmend zwischen den beiden Transportbalken gegriffen und transportiert werden.Opposite the transport bar can be provided in the X and Y direction movably held further transport bar. The further transport bar may be formed according to the transport bar. Also, at least one provided for movement of the further transport bar drive can be designed according to the first or second drive. Conveniently, the second transport bar is provided with two drives and formed in mirror image to the first transport bar. With the proposed arrangement, the workpieces can be gripped and transported by clamping between the two transport bars.

Nach weiterer Maßgabe der Erfindung ist ein Verfahren zum Aus- oder Einbau eines Werkzeugs und/oder Transportbalkens bei der erfindungsgemäßen Vorrichtung mit folgenden Schritten vorgesehen:

  1. a) Vorsehen einer Schwenkvorrichtung am Transportbalken,
  2. b) Trennen des Transportbalkens vom ersten Antrieb,
  3. c) Verschwenken des Transportbalkens und
  4. d) Aus- oder Einbau des Werkzeugs und/oder Transportbalkens.
According to another aspect of the invention, a method for removing or installing a tool and / or transport bar in the device according to the invention is provided with the following steps:
  1. a) providing a pivoting device on the transport bar,
  2. b) separating the transport bar from the first drive,
  3. c) pivoting of the transport bar and
  4. d) removal or installation of the tool and / or transport bar.

Die Schwenkvorrichtung ist insbesondere so ausführt, dass sie lösbar am Transportbalken angebracht werden kann. Das Anbringen der Schwenkvorrichtung erfolgt zweckmäßigerweise in einer vom Werkzeug entfernten Ausgangsstellung des Transportbalkens.The pivoting device is in particular designed so that it can be releasably attached to the transport bar. The attachment of the pivoting device is advantageously carried out in a remote from the tool starting position of the transport bar.

Insbesondere das Verschwenken des vom ersten Antrieb getrennten Transportbalkens erleichtert und beschleunigt erheblich einen Aus- oder Einbau des Werkzeugs und/oder des Transportbalkens.In particular, the pivoting of the separate from the first drive transport bar facilitates and significantly accelerates a removal or installation of the tool and / or the transport bar.

Vorteilhafte Ausgestaltungen des Verfahrens ergeben sich insbesondere auch aus den vorgenannten Merkmalen, die sinngemäß auch zur Durchführung des Verfahrens anwendbar sind. Insbesondere beim Vorsehen zweier als Parallelogrammstelltriebe ausgebildeter Antriebe kann der Transportbalken mittels der Kupplungen schnell und einfach von der Transporteinrichtung gelöst werden. Die Parallelogrammstelltriebe sind selbsttragend, d. h. sie müssen bei ausgebautem Transportbalken nicht gesondert abgestützt werden.Advantageous embodiments of the method result in particular from the aforementioned features, which are mutatis mutandis applicable to the implementation of the method. In particular, when providing two trained as Parallelogrammstelltriebe drives the transport bar can be solved quickly and easily by means of the clutches of the transport device. The parallelogram actuators are self-supporting, d. H. they do not have to be supported separately when the transport beam is removed.

Nachfolgend werden Ausführungsbeispiele der Erfindung anhand der Zeichnungen näher erläutert. Es zeigen:

Fig. 1
eine Seitenansicht eines Antriebsmoduls,
Fig. 2
eine Schnittansicht gemäß der Schnittlinie A - A' in Fig. 1,
Fig. 3
eine Seitenansicht einer Presse mit einer ersten Vorrichtung,
Fig. 4
eine Schnittansicht gemäß Fig. 3 gemäß der Schnittlinie A - A',
Fig. 5a - d
den Bewegungsablauf bei einer ersten Vorrichtung,
Fig. 6a - d
den Bewegungsablauf bei einer zweiten Vorrichtung,
Fig. 7
eine Prinzipskizze einer dritten Vorrichtung,
Fig. 8a
eine Prinzipskizze der Anordnung der ersten Vorrichtung,
Fig. 8b
die Anordnung gemäß Fig. 8a mit einer alternativen Stellung der Lenker,
Fig. 9a - d
Prinzipskizzen des Bewegungsablaufs, wie er in den Fig. 5a - d gezeigt ist und
Fig. 10
eine Draufsicht auf eine vierte Vorrichtung.
Embodiments of the invention will be explained in more detail with reference to the drawings. Show it:
Fig. 1
a side view of a drive module,
Fig. 2
a sectional view along the section line A - A 'in Fig. 1 .
Fig. 3
a side view of a press with a first device,
Fig. 4
a sectional view according to Fig. 3 according to the section line A - A ',
Fig. 5a - d
the sequence of movements in a first device,
Fig. 6a - d
the sequence of movements in a second device,
Fig. 7
a schematic diagram of a third device,
Fig. 8a
a schematic diagram of the arrangement of the first device,
Fig. 8b
the arrangement according to Fig. 8a with an alternative position of the handlebars,
Fig. 9a - d
Schematic diagrams of the sequence of movements, as in the Fig. 5a - d is shown and
Fig. 10
a plan view of a fourth device.

Die Fig. 1 und 2 zeigen ein zur Herstellung einer erfindungsgemäßen Transporteinrichtung geeignetes Antriebsmodul AM. Ein erster Schlitten 1 ist z. B. über einen Zahnriemen 2 mit Zahnscheiben 3 verbunden. Eine der beiden Zahnscheiben 3 ist mit einem ersten Elektromotor 4 antriebsmäßig verbunden. Der erste Schlitten 1 ist in einer (hier nicht gezeigten) in X-Richtung verlaufenden X-Schiene geführt, die sich über den zwischen den Zahnscheiben 3 gebildeten Abstand erstreckt. Am ersten Schlitten 1 sind in Z-Richtung verlaufende Z-Schienen 5 angebracht, in denen ein zweiter Schlitten 6 geführt ist. Der erste 1 und der zweite Schlitten 6 bilden einen Kreuzschlitten. Am zweiten Schlitten 6 sind schwenkbar Lenker 7 angebracht. Der zweite Schlitten 6 erfüllt die Funktion eines die beiden Lenker 7 in X-Richtung koppelnden ersten Koppelelements. Die Lenker 7 sind an ihrem einen Ende in ortsfest am zweiten Schlitten 6 angebrachten ersten Schwenklagern 8 aufgenommen. An ihrem anderen Ende sind die ersten Lenker 7 in ortsfest an einem zweiten Koppelelement 9 angebrachten zweiten Schwenklagern 10 schwenkbar gehalten. In Fig. 2 sind insbesondere die Schlitten 1, 6, die ersten Lenker 7 und das zweite Koppelelement 9 in zwei unterschiedlichen Positionen gezeigt. Das zweite Koppelelement 9, die Lenker 7 und der zweite Schlitten 6 bilden einen Parallelogrammstelltrieb PL. Es ist selbstverständlich auch denkbar, dass das erste Koppelelement ein separates Bauteil bildet, welches am zweiten Schlitten 6 angebracht ist.The Fig. 1 and 2 show a suitable for producing a transport device according to the invention drive module AM. A first carriage 1 is z. B. connected via a toothed belt 2 with toothed discs 3. One of the two toothed disks 3 is drivingly connected to a first electric motor 4. The first carriage 1 is guided in an X-rail extending in the X-direction (not shown here), which extends over the distance formed between the toothed disks 3. On the first carriage 1 extending Z-rails 5 are mounted in the Z direction, in which a second carriage 6 is guided. The first 1 and the second carriage 6 form a cross slide. On the second carriage 6 pivotally arm 7 are attached. The second carriage 6 fulfills the function of a coupling element coupling the two links 7 in the X direction. The links 7 are accommodated at one end in the first carriage 8 fixedly mounted on the second carriage 6. At its other end, the first link 7 are held in a fixedly mounted on a second coupling element 9 second pivot bearings 10 pivotally. In Fig. 2 In particular, the carriages 1, 6, the first links 7 and the second coupling element 9 are shown in two different positions. The second coupling element 9, the link 7 and the second carriage 6 form a Parallelogrammstelltrieb PL. It is of course also conceivable that the first coupling element forms a separate component, which is mounted on the second carriage 6.

Wie aus Fig. 1 weiter ersichtlich ist, ist der zweite Schlitten 6 in horizontaler Richtung gleitbar an einem horizontal verlaufenden Träger 11 angebracht. Der Träger 11 ist in Z-Richtung vertikal gleitbar in Z-Führungen 12 geführt. Ein zweiter Elektromotor 13 dient der vertikalen Bewegung des Trägers 11.How out Fig. 1 it can be seen further, the second carriage 6 is slidably mounted in the horizontal direction on a horizontally extending carrier The carrier 11 is vertically slidably guided in Z-direction in Z-guides 12. A second electric motor 13 serves for vertical movement of the carrier 11.

Mittels zweier der in Fig. 1 und 2 gezeigten Antriebsmodule AM ist es möglich, einen an den zweiten Koppelelementen 9 angebrachten Transportbalken in X-, Y- und Z-Richtung zum Transport von Werkstücken zu bewegen.By means of two of in Fig. 1 and 2 shown drive modules AM, it is possible to move a attached to the second coupling elements 9 transport beams in the X, Y and Z direction to move workpieces.

Die Fig. 3 und 4 zeigen eine erste Vorrichtung. Es handelt sich dabei um eine Transporteinrichtung, welche ein erstes Antriebsmodul AM1 und ein zweites Antriebsmodul AM2 aufweist. Die Antriebsmodule AM1, AM2 entsprechen dem in den Fig. 1 und 2 gezeigten Antriebsmodul AM. Das erste Antriebsmodul AM1 weist einen ersten Parallelogrammstelltrieb PL1 und das zweite Antriebsmodul AM2 einen zweiten Parallelogrammstelltrieb PL2 auf. Die Antriebsmodule AM1, AM2 sind am Gestell 14 einer Presse P montiert. Die ersten Koppelelemente 9 der Antriebsmodule AM1, AM2 sind mit einem Transportbalken 15 verbunden.The Fig. 3 and 4 show a first device. It is a transport device which has a first drive module AM1 and a second drive module AM2. The drive modules AM1, AM2 correspond to those in the Fig. 1 and 2 shown drive module AM. The first drive module AM1 has a first parallelogram drive PL1 and the second drive module AM2 has a second parallelogram drive PL2. The drive modules AM1, AM2 are mounted on the frame 14 of a press P. The first coupling elements 9 of the drive modules AM1, AM2 are connected to a transport bar 15.

Wie insbesondere aus Fig. 4 ersichtlich ist, sind am Transportbalken 15 mehrere Greifeinrichtungen 16 angebracht. Derartige Greifeinrichtungen 16 können als Aktiv-Greifelemente ausgebildet sein. Sie dienen zum Greifen von Werkstücken 17. Sofern - wie in Fig. 5 gezeigt ist - zwei Transportbalken 15 ineinander gegenüberliegender Anordnung vorgesehen sind, können die Greifeinrichtungen 16 auch als Passiv-Greifelemente zum klemmenden Halten von Werkstücken 17 ausgebildet sein.As in particular from Fig. 4 it can be seen, 15 more gripping devices 16 are attached to the transport bar. Such gripping means 16 may be formed as active gripping elements. They serve to grasp workpieces 17. Unless - as in Fig. 5 is shown - two transport bars 15 are provided in mutually opposite arrangement, the gripping means 16 may also be formed as a passive gripping elements for clamping holding workpieces 17.

Mit dem Bezugszeichen K sind Kupplungen zur Verbindung des Transportbalkens 15 mit dem Koppelelement 9 bezeichnet. Die Kupplungen K können in Form einer Schraubverbindung ausgeführt sein.The reference symbol K denotes couplings for connecting the transport bar 15 to the coupling element 9. The couplings K can be designed in the form of a screw connection.

Die Fig. 5a bis 5d zeigen den Bewegungsablauf einer ersten Vorrichtung. Dabei sind die Antriebsmodule AM1, AM2 an der Außenseite des Gestells 14 der Presse P angebracht. Der Transportbalken 15 ist auch hier mit Greifeinrichtungen 16 versehen. Ein Transport der Werkstücke in die Transportrichtung ist auch hier durch eine geeignete koordinierte Bewegung der ersten Schlittens 1 in X-Richtung möglich.The Fig. 5a to 5d show the sequence of movement of a first device. In this case, the drive modules AM1, AM2 are mounted on the outside of the frame 14 of the press P. The transport bar 15 is also provided here with gripping means 16. A transport of the workpieces in the transport direction is also possible here by a suitable coordinated movement of the first carriage 1 in the X direction.

Bei der in den Fig. 6a bis 6d gezeigten zweiten Vorrichtung sind zwei Transporteinrichtungen T1 und T2 vorgesehen. Deren Antriebsmodule AM1, AM2 bzw. AM21, AM22 sind wiederum an der Außenseite des Gestells 14 angebracht. Der Transportbalken 15 und ein weiterer Transportbalken 18 sind in einer Ebene einander gegenüberliegend angeordnet. Die Transportbalken 15 bzw. 18 sind hier wiederum mit Greifeinrichtungen 16 versehen. In diesem Fall sind die Greifeinrichtungen 16 als so genannte Passiv-Greifelemente ausgeführt, d. h. sie sind in ihrer Form korrespondierend zur Form der zu transportierenden Werkstücke 17 ausgeführt. Dabei werden die Werkstücke 17 von zwei Greifelementen gegriffen, die mittels der Transportbalken 15, 18 aufeinander zu bewegt werden. Die Fig. 8a bis 8d zeigen den Bewegungsablauf bei der Verwendung zweier erfindungsgemäßer Transporteinrichtungen T1, T2. Zum Transport der Werkstücke 17 in X-Richtung ist es hier erforderlich, auch die Bewegungen der ersten Schlitten 1 der Antriebsmodule AM21 und AM22 der weiteren Transporteinrichtung T2 abgestimmt mit dem Bewegungen den ersten Schlitten 1 der Antriebsmodule AM1, AM2 der Transporteinrichtung T1 auszuführen. Die Steuerung der Bewegungen der ersten Schlitten 1 kann über eine programmgesteuerte Ansteuerung der jeweiligen Antriebseinrichtung, insbesondere der Elektromotoren erfolgen.In the in the Fig. 6a to 6d shown second device, two transport devices T1 and T2 are provided. Their drive modules AM1, AM2 or AM21, AM22 are in turn mounted on the outside of the frame 14. The transport bar 15 and another transport bar 18 are arranged opposite each other in a plane. The transport bars 15 and 18 are here in turn provided with gripping means 16. In this case, the gripping devices 16 are designed as so-called passive gripping elements, ie they are designed in their shape corresponding to the shape of the workpieces 17 to be transported. The workpieces 17 are gripped by two gripping elements, which are moved toward one another by means of the transport bars 15, 18. The Fig. 8a to 8d show the sequence of movements when using two inventive transport devices T1, T2. In order to transport the workpieces 17 in the X direction, it is also necessary here to execute the movements of the first carriages 1 of the drive modules AM21 and AM22 of the further transport device T2 in coordination with the movements of the first carriages 1 of the drive modules AM1, AM2 of the transport device T1. The control of the movements of the first carriage 1 can be carried out via a program-controlled activation of the respective drive device, in particular the electric motors.

Fig. 7 zeigt als Prinzipskizze eine dritte Vorrichtung. Dabei sind zweite Schlitten 19 gleitbar am Transportbalken 15 gehalten. Der Schlitten 19 erfüllt die Funktion des zweiten Koppelelements 9. Die Lenker 7 sind hier in einem weiteren Koppelelement 20 schwenkbar gehalten, welches am Gestell 14 angebracht ist. Das Koppelelement 20 kann dabei in Z-Richtung bewegbar angebracht sein. Das weitere Koppelelement 20, die Lenker 7 und die zweiten Schlitten 19 bilden hier wiederum einen Parallelogrammstelltrieb PL. Bei der in Fig. 7 gezeigten dritten Vorrichtung erfolgt die Bewegung des Transportbalkens 15 nicht durch eine aktive Bewegung der zweiten Schlitten 19, sondern durch eine außen liegende Antriebsvorrichtung 21, mit welcher der Transportbalken 15 sowohl in X-als auch in Y-Richtung bewegbar ist. Die außen liegende Antriebsvorrichtung 21 weist einen gleitbar im zweiten Schlitten geführten Koppelbalken 23 auf, der wiederum über die Kupplung K mit dem Transportbalken 15 lösbar verbunden ist. Es kann aber auch sein, dass anstelle der Antriebsvorrichtung 21 die zweiten Schlitten 19 jeweils eine Antriebseinrichtung zur Bewegung auf dem Transportbalken 15 aufweisen. Eine unerwünschte Durchbiegung des Transportbalkens 15 wird auch hier durch dessen Aufnahme mittels der erfindungsgemäßen Parallelogrammstelltriebe PL wesentlich verringert. Fig. 7 shows a schematic diagram of a third device. In this case, second carriage 19 are slidably held on the transport bar 15. The carriage 19 fulfills the function of the second coupling element 9. The links 7 are here in another Coupling element 20 pivotally mounted, which is mounted on the frame 14. The coupling element 20 can be movably mounted in the Z direction. The further coupling element 20, the handlebar 7 and the second carriage 19 in turn here form a Parallelogrammstelltrieb PL. At the in Fig. 7 3, the movement of the transport bar 15 is not effected by an active movement of the second carriages 19, but by an external drive device 21 with which the transport bar 15 is movable in both the X and Y directions. The outer drive device 21 has a slidably guided in the second carriage coupling bar 23, which in turn is releasably connected via the coupling K with the transport bar 15. However, it may also be that, instead of the drive device 21, the second carriages 19 each have a drive device for movement on the transport bar 15. An undesirable deflection of the transport bar 15 is also substantially reduced by its inclusion by means of the Parallelogrammstelltriebe invention PL.

Fig. 8a zeigt nochmals als Prinzipskizze die Anordnung der Lenker 7 der ersten Vorrichtung. In Fig. 8b ist eine alternative Anordnung der Lenker 7 wiedergegeben. In jedem Fall sind die Lenker 7 so angeordnet, dass sie bei einer Bewegung des Transportbalkens 15 in entgegengesetzte Richtungen verschwenkt werden. Fig. 8a again shows a schematic diagram of the arrangement of the handlebars 7 of the first device. In Fig. 8b an alternative arrangement of the handlebar 7 is reproduced. In any case, the links 7 are arranged so that they are pivoted in a movement of the transport bar 15 in opposite directions.

Fig. 9a bis 9d zeigen nochmals den Bewegungsablauf bei der ersten Vorrichtung (siehe auch Fig. 5a bis 5d). Fig. 9a to 9d show again the sequence of movements in the first device (see also Fig. 5a to 5d ).

Fig. 10 zeigt eine Draufsicht auf eine vierte Vorrichtung. Dabei sind in einander gegenüberliegender Anordnung am Gestell 14 einer Presse P jeweils erste AM1 und zweite Antriebsmodule AM2 angebracht. Die ersten AM1 und zweiten Antriebsmodule AM2 weisen jeweils das zweite Koppelelement 9 auf, das mittels der Kupplung K mit dem Transportbalken 15 verbindbar ist. Fig. 10 shows a plan view of a fourth device. In each case, first AM1 and second drive modules AM2 are mounted on the frame 14 of a press P in opposite directions. The first AM1 and second drive modules AM2 each have the second coupling element 9, which can be connected to the transport bar 15 by means of the coupling K.

Bei dem in Fig. 10 gezeigten Ausführungsbeispiel weist die Kupplung K zueinander korrespondierende Kopplungselemente auf. Die Kopplungselemente könnten eine Klemm-, Rast- oder Steckverbindung bilden. So kann eines der Kopplungselemente als ein sich vom zweiten Koppelelement 9 erstreckender mit einem Hinterschnitt versehener Vorsprung ausgebildet sein, der in eine dazu korrespondierend ausgebildete am Transportbalken 15 vorgesehene Ausnehmung einsteckbar ist. Die zueinander korrespondierenden Kopplungselemente können insbesondere auch konische oder abgeschrägte Flächen aufweisen, so dass damit eine starre Verbindung zwischen dem zweiten Koppelelement 9 und dem Transportbalken 15 herstellbar ist.At the in Fig. 10 embodiment shown, the coupling K to each other on corresponding coupling elements. The coupling elements could form a clamping, latching or plug connection. Thus, one of the coupling elements may be formed as a protrusion provided with an undercut extending from the second coupling element 9, which projection can be inserted into a corresponding recess provided on the transporting beam 15. The mutually corresponding coupling elements may in particular also have conical or bevelled surfaces, so that thus a rigid connection between the second coupling element 9 and the transport bar 15 can be produced.

Wie aus Fig. 10 weiter ersichtlich ist, ist der Transportbalken 15 in seiner Länge kleiner als ein Abstand A ausgebildet, der in einer X-Richtung zwischen zwei das Gestell 14 bildenden Säulen ausgebildet ist. Aus Fig. 10 ist aber auch ersichtlich, dass der Transportbalken 15 auch dann zwischen den Säulen verschwenkt werden kann, wenn dessen Länge gleich oder in einem gewissen Ausmaß größer als der Abstand A ist.How out Fig. 10 can be seen, the transport bar 15 is formed in its length smaller than a distance A, which is formed in an X direction between two frames 14 forming columns. Out Fig. 10 but it can also be seen that the transport bar 15 can be pivoted between the columns even if its length is equal to or to some extent greater than the distance A.

Die Transportbalken 15 sind bei der in Fig. 10 gezeigten vierten Vorrichtung von den zweiten Koppelelementen 9 getrennt. In eine in der Nähe des einen Endes der Transportbalken 15 vorgesehene Ausnehmung sind Zapfen 22 eingefahren. Die Zapfen 22 sind Bestandteil einer hier nicht näher gezeigten Schwenkvorrichtung. Die Zapfen 22 können mittels der Schwenkvorrichtung beispielsweise hydraulisch, pneumatisch und/oder elektrisch angehoben und in die in am Transportbalken 15 vorgesehenen zylindrischen Ausnehmungen eingefahren werden.The transport bars 15 are in the in Fig. 10 shown fourth device separated from the second coupling elements 9. In a provided in the vicinity of one end of the transport bar 15 recess pin 22 are retracted. The pins 22 are part of a pivoting device not shown here in detail. The pins 22 can be raised by means of the pivoting device, for example, hydraulically, pneumatically and / or electrically and retracted into the provided in the transport bar 15 cylindrical recesses.

Die Funktion der Vorrichtung ist folgende:The function of the device is as follows:

Zum Wechsel eines allgemein mit dem Bezugszeichen W bezeichneten Werkzeugs wird zunächst mittels einer Schwenkvorrichtung der Zapfen 22 in die dazu korrespondierende zylindrische Ausnehmung am Transportbalkens 15 eingefahren. Die zum Aufnahme des Zapfens 22 geeignete Ausnehmung kann auch in einer beispielsweise seitlich am Transportbalken angebrachten (hier nicht gezeigten) Einrichtung vorgesehen sein. Das Vorsehen einer solchen am Transportbalken gesondert angebrachten Einrichtung gewährleistet eine besonders hohe Steifigkeit des Transportbalkens 15. Mit dem Einfahren des Zapfens 22 in die zylindrische Ausnehmung ist der Transportbalken 15 in seiner Lage fixiert. Anschließend werden die zweiten Koppelelemente 9 der Antriebsmodule AM1 und AM2 mittels der Kupplungen K vom Transportbalken 15 gelöst. Die zweiten Koppelelemente 9 können mittels der Antriebsmodule AM1 und AM2 vom Transportbalken 15 weggefahren werden. Anschließend kann der Transportbalken 15 um den Zapfen 22 in eine Richtung senkrecht zur X-Richtung verschwenkt werden. Die Schwenkvorrichtung ist so ausgebildet, dass damit das vom Transportbalken ausgeübte Moment aufgenommen wird. Damit ist das Werkzeug W freigegeben und kann gewechselt werden.To change a generally designated by the reference W tool is first by means of a pivoting device of the pin 22 in the corresponding cylindrical Recess retracted on the transport bar 15. The recess suitable for receiving the pin 22 may also be provided in a device, for example, attached laterally to the transport bar (not shown here). The provision of such a transport bar separately mounted device ensures a particularly high rigidity of the transport bar 15. With the retraction of the pin 22 in the cylindrical recess of the transport bar 15 is fixed in its position. Subsequently, the second coupling elements 9 of the drive modules AM1 and AM2 are released by means of the couplings K from the transport bar 15. The second coupling elements 9 can be moved away from the transport bar 15 by means of the drive modules AM1 and AM2. Subsequently, the transport bar 15 can be pivoted about the pin 22 in a direction perpendicular to the X direction. The pivoting device is designed such that it absorbs the moment exerted by the transport bar. Thus, the tool W is released and can be changed.

Wie in Fig. 10 gezeigt ist, können auch beide einander gegenüberliegenden Transportbalken 15 vom Werkzeug W wegverschwenkt werden. Das ermöglicht einen Austausch des Werkzeugs W z. B. mittels eines Verschiebetischs.As in Fig. 10 is shown, both opposite transport beams 15 can be pivoted away from the tool W. This allows an exchange of the tool W z. B. by means of a translation table.

Selbstverständlich ist es auch möglich, anstelle des in Fig. 10 gezeigten in Z-Richtung verlaufenden Zapfens 22 einen Zapfen 22 vorzusehen, welcher den Transportbalken 15 in Y-Richtung durchgreift. In diesem Fall kann der Transportbalken 15 dann in einer X-Z-Ebene verschwenkt werden. - Anstelle des Zapfens 22 können selbstverständlich auch andere geeignete Aufnahmen vorgesehen sein, welche eine Schwenkbewegung des Transportbalkens 15 um eine Achse ermöglichen, welche innerhalb der Presse P, insbesondere in der Nähe der Koppelelemente 9 verläuft. Damit erübrigt sich das Vorsehen von Verschiebetischen zum Aus- und Einbau des Transportbalkens 15.Of course it is also possible, instead of in Fig. 10 shown in the Z direction extending pin 22 to provide a pin 22 which passes through the transport bar 15 in the Y direction. In this case, the transport bar 15 can then be pivoted in an XZ plane. - Instead of the pin 22, of course, other suitable receptacles may be provided which allow pivotal movement of the transport bar 15 about an axis which extends within the press P, in particular in the vicinity of the coupling elements 9. Thus, the provision of moving tables for removal and installation of the transport bar 15 is unnecessary.

BezugszeichenlisteLIST OF REFERENCE NUMBERS

11
erster Schlittenfirst sled
22
Zahnriementoothed belt
33
Zahnscheibetoothed washer
44
erster Elektromotorfirst electric motor
55
Z-SchieneZ-rail
66
zweiter Schlittensecond sled
77
Lenkerhandlebars
88th
erstes Schwenklagerfirst pivot bearing
99
Koppelelementcoupling element
1010
zweites Schwenklagersecond pivot bearing
1111
Trägercarrier
1212
Z-FührungZ-guide
1313
zweiter Elektromotorsecond electric motor
1414
Gestellframe
1515
Transportbalkentransport bar
1616
Greifeinrichtunggripper
1717
Werkstückworkpiece
1818
weitere Transportbalkenfurther transport beams
1919
zweiter Schlittensecond sled
2020
weiteres Koppelelementanother coupling element
2121
Antriebsvorrichtungdriving device
2222
Zapfenspigot
2323
Koppelbalkentie beam
T1T1
Transporteinrichtungtransport means
T2T2
weitere Transporteinrichtungfurther transport device
AM1, AM2AM1, AM2
Antriebsmodule der ersten TransporteinrichtungDrive modules of the first transport device
AM21, AM22AM21, AM22
Antriebsmodule der zweiten TransporteinrichtungDrive modules of the second transport device
PP
PressePress
PL, PL1, PL2PL, PL1, PL2
ParallelogrammstelltriebParallelogrammstelltrieb
WW
WerkzeugTool
KK
Kupplungclutch

Claims (34)

  1. Device for the transport of work pieces (17) in an X direction with at least one transport unit (T1, T2) which can be attached to a frame (14) of a processing device, which transport unit has at least one transport bar (15) which can moved in X and Y direction via a first drive (AM1, AM2), wherein the transport bar (15) is detachably connected on its one end with the first drive (AM1, AM2) via a first coupling (K),
    characterized in that
    a swivel device is provided with which the transport bar (15) can be swiveled when in a state detached from the first drive (AM1, AM2).
  2. Device as defined in claim 1, wherein the swivel device has swivel axis essentially running in a Z direction.
  3. Device as defined in one of the preceding claims, wherein the transport bar (15) is detachably connected on its other end with a second drive (AM2) via a second coupling (K).
  4. Device as defined in one of the preceding claims, wherein the swivel device can be detachably attached to the transport bar (15).
  5. Device as defined in one of the preceding claims, wherein the swivel device has a means of swivelably holding the transport bar (15) in a state detached from the drives (AM1, AM2).
  6. Device as defined in claim 5, wherein the means of swivelably holding has a pin (22) which meshes with a receptacle provided on the transport bar (15).
  7. Device as defined in one of the preceding claims, wherein the swivel device has a hinge which connects the transport bar (15) with one of the drives (AM1, AM2).
  8. Device as defined in one of the preceding claims, wherein the first (AM1) and/or second drive (AM2) has a parallelogram actuating drive (PL1, PL2).
  9. Device as defined in claim 8, wherein the parallelogram actuating drive (PL1, PL2) has a first (6) and a second coupling element (9) arranged opposite each other, which coupling elements are connected with each other via at least two steering elements (7) attached parallel to each other.
  10. Device as defined in one of the preceding claims, wherein the first coupling element (6, 20) is attached to a linear movement device or component of same.
  11. Device as defined in one of the preceding claims, wherein the first coupling element (6, 20) forms a first gliding element (6) of the linear movement device.
  12. Device as defined in one of the preceding claims 3 to 11, wherein the second coupling element (9) can be connected with the transport bar (15) via the first and/or second coupling (K).
  13. Device as defined in one of the claims 10 to 12, wherein the linear movement device has a second gliding element (1) which can be moved vertical to the direction of movement of the first gliding element (6), to which second gliding element the first gliding element (6) is attached.
  14. Device as defined in one of the claims 11 to 13, wherein the first (6) and/or second gliding element (1) is a carriage conducted on a linear guide.
  15. Device as defined in one of the claims 13 or 14, wherein the first (6) and second gliding element (1) are designed like a cross slide.
  16. Device as defined in one of the claims 11 to 15, wherein at least one first drive unit (13) is provided for the movement of the first (6) and/or second gliding element (1), preferably in Z direction.
  17. Device as defined in one of the claims 11 to 16, wherein at least one second drive unit (4) is provided for the movement of the first (6) and/or second gliding element (1), preferably in X direction.
  18. Device as defined in one of the claims 16 or 17, wherein the first (6) and/or second gliding element (1) is connected with the first (13) and/or second drive unit (4) via a toothed belt (2).
  19. Device as defined in one of the claims 11 to 18, wherein the first (6) and/or second gliding element (1) is attached to a linear motor.
  20. Device as defined in one of the claims 9 to 19, wherein the second coupling element (9, 19) is attached in a linearly movable manner to a coupling bar (23) and the transport bar (15) is attached to the coupling bar (23) via the first and or second coupling (K).
  21. Device as defined in one of the preceding claims, wherein gripping units (16) are provided on the transport bar (15) for gripping the work pieces (17) to be transported.
  22. Device as defined in one of the claims 9 to 21, wherein the steering elements (7) of a first parallelogram actuating drive (PL1) can be swiveled with a movement of the transport bar (15) in Y direction opposite to the steering elements (7) of a second parallelogram actuating drive (PL2).
  23. Device as defined in one of the claims 11 to 22, wherein at least one glide guide is provided to retain the first (6) and/or second gliding elements (1).
  24. Device as defined in claim 23, wherein the glide guide/guides is/are attached to the frame (14) of a processing device (P).
  25. Device as defined in claim 24, wherein the glide guide/guides is/are attached inside the frame (14) or outside on the frame (14).
  26. Device as defined in one of the preceding claims, wherein a further transport unit (T2) is located opposite the first transport unit (T1), preferably in mirror image arrangement.
  27. Device as defined in one of the preceding claims, wherein a length of the transport bar (15) is dimensioned so that it can be swiveled in the X-Y plane between columns of the processing unit (P).
  28. Device as defined in one of the preceding claims, wherein a further transport bar (15) which can be moved in X and Y direction is provided opposite the transport bar (15).
  29. Device as defined in the claim 28, wherein the further transport bar (15) is designed in accordance with the transport bar (15).
  30. Device as defined in claim 28 or 29, wherein at least one further drive (AM1, AM2) provided for the movement of the further transport bar (15) is designed in accordance with the first or second drive (AM1, AM2).
  31. Method for the removal or installation of a tool (W) and/or a transport bar (15) with use of a device as defined in one of the preceding claims consisting of the following steps:
    a) Provision of a swivel device on the transport bar (15),
    b) Separation of the transport bar (15) from the first drive (AM1, AM2),
    c) Swiveling the transport bar (15) and
    d) Removal and installation of the tool (W) and/or the transport bar (15).
  32. Method as defined in claim 31, wherein the transport bar (15) is swiveled around an axis essentially running in Z or Y direction.
  33. Method as defined in claim 31 or 32, wherein the transport bar (15) is also separated from the second drive (AM2) with step b.
  34. Method as defined in one of the claims 31 to 34, wherein the transport bar (15) is swiveled in the X-Y plane in a space formed between columns of the processing device (P).
EP05100807A 2004-02-12 2005-02-04 Apparatus and method for feeding workpieces Not-in-force EP1563926B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102004007165 2004-02-12
DE102004007165A DE102004007165A1 (en) 2004-02-12 2004-02-12 Device for transporting workpieces

Publications (2)

Publication Number Publication Date
EP1563926A1 EP1563926A1 (en) 2005-08-17
EP1563926B1 true EP1563926B1 (en) 2008-04-23

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US (1) US20050227840A1 (en)
EP (1) EP1563926B1 (en)
AT (1) ATE392965T1 (en)
DE (2) DE102004007165A1 (en)
ES (1) ES2306006T3 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102016110491A1 (en) * 2016-06-07 2017-12-07 Schuler Automation Gmbh & Co. Kg Transport device for presses

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3143217A (en) * 1961-01-16 1964-08-04 Avis Ind Corp Transfer mechanism
DE2646759C3 (en) * 1976-10-15 1980-07-10 Bell Maschinenfabrik Ag, Kriens (Schweiz) Device for removing and transporting hollow plastic bodies from a blow mold
DE2847273C3 (en) * 1978-10-31 1981-10-08 G. Siempelkamp Gmbh & Co, 4150 Krefeld Panel press with a device for loading the press in the course of the production of tempered chipboard
US4540087A (en) * 1982-08-19 1985-09-10 Kabushiki Kaisha Komatsu Seisakusho Three-dimensional work transfer apparatus
DE3316815C1 (en) * 1983-05-07 1984-10-11 Maschinenfabrik Müller-Weingarten AG, 7987 Weingarten Sliding table provided for the tool change in presses
DD282188A5 (en) * 1989-03-13 1990-09-05 Warnke Umformtech Veb K GRIPPING RAIL CHANGING DEVICE FOR TWO AND MULTIPLE TRANSFER PRESSES
ATE106839T1 (en) * 1990-12-11 1994-06-15 Styner & Bienz Ag TRANSFER ARRANGEMENT ON A PRESS.
SE466246B (en) * 1990-12-14 1992-01-20 Volvo Ab DEVICE FOR TRANSFER OF THE WORK PIECE FROM A MACHINE TO ANOTHER, PRIOR TO PRESSURE
US5632181A (en) * 1995-02-23 1997-05-27 Verson, A Division Of Allied Products Corporation System and method for transferring a work piece in a multi-station press
DE19526490A1 (en) * 1995-07-20 1997-01-23 Schuler Pressen Gmbh & Co Transfer system with three-axis transfer

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US20050227840A1 (en) 2005-10-13
DE502005003794D1 (en) 2008-06-05
EP1563926A1 (en) 2005-08-17
ES2306006T3 (en) 2008-11-01
DE102004007165A1 (en) 2005-09-22
ATE392965T1 (en) 2008-05-15

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