EP2185331B1 - Installation de traitement de pieces en bois, matiere plastique et analogues, et procede de traitement de telles pieces - Google Patents

Installation de traitement de pieces en bois, matiere plastique et analogues, et procede de traitement de telles pieces Download PDF

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Publication number
EP2185331B1
EP2185331B1 EP08801576A EP08801576A EP2185331B1 EP 2185331 B1 EP2185331 B1 EP 2185331B1 EP 08801576 A EP08801576 A EP 08801576A EP 08801576 A EP08801576 A EP 08801576A EP 2185331 B1 EP2185331 B1 EP 2185331B1
Authority
EP
European Patent Office
Prior art keywords
workpiece
clamping
workpieces
clamped
carriages
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
EP08801576A
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German (de)
English (en)
Other versions
EP2185331A1 (fr
Inventor
Uwe Motzkau
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.)
Michael Weinig AG
Original Assignee
Michael Weinig AG
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
Application filed by Michael Weinig AG filed Critical Michael Weinig AG
Priority to SI200830258T priority Critical patent/SI2185331T1/sl
Publication of EP2185331A1 publication Critical patent/EP2185331A1/fr
Application granted granted Critical
Publication of EP2185331B1 publication Critical patent/EP2185331B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27MWORKING OF WOOD NOT PROVIDED FOR IN SUBCLASSES B27B - B27L; MANUFACTURE OF SPECIFIC WOODEN ARTICLES
    • B27M1/00Working of wood not provided for in subclasses B27B - B27L, e.g. by stretching
    • B27M1/08Working of wood not provided for in subclasses B27B - B27L, e.g. by stretching by multi-step processes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27FDOVETAILED WORK; TENONS; SLOTTING MACHINES FOR WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES
    • B27F1/00Dovetailed work; Tenons; Making tongues or grooves; Groove- and- tongue jointed work; Finger- joints
    • B27F1/02Making tongues or grooves, of indefinite length

Definitions

  • the invention relates to a device for processing workpieces made of wood, plastic and the like according to the preamble of claim 1 and a method for processing such workpieces according to the preamble of claim 6 and 12 respectively.
  • EP-A-1 810 802 the workpiece is clamped on one side by individual collets, which can be positioned independently of one another along the workpiece.
  • the clamping device consists of two feed elements, which are limited relative to each other adjustable to adjust the length of the clamping device to the length of the workpiece to be clamped.
  • the invention has the object of providing the generic device and the generic method in such a way that the workpieces can be clamped reliably and flexibly, without the need for a complex adjustment is required.
  • the tensioning device consists of the first and the second tensioning carriages, which can each be positioned independently of one another.
  • the workpieces can be flexibly tensioned with the tensioning carriages, depending on the length and the area in which machining is to take place.
  • the individual clamping carriages can be moved to the desired position of the workpieces in the longitudinal direction, so that the workpieces can be optimally tensioned for subsequent processing. This makes it easy to position the clamping carriages and clamp the workpiece with them so that a workpiece area is accessible for machining.
  • the workpiece can be clamped with the first and second clamping carriages from two sides to about half the width.
  • the first tensioning carriages are arranged in mirror image to the second tensioning carriages. This makes it very easy to keep the workpieces always clamped in the transfer of the first to the second tensioner.
  • the clamping carriages each have an upper and a lower collet, which clamp the workpiece at the top and at the bottom. As a result, the workpiece can be clamped securely with the clamping carriage, so that it is held reliably during processing.
  • At least one of the first clamping carriages, with which the workpiece is clamped is provided with at least one stop for the workpiece, it can be clamped with exact position.
  • the stop is adjustable transversely to the direction of movement of the clamping carriage.
  • a simple adaptation of the clamping carriage to different widths workpieces is possible.
  • the clamping carriages are moved synchronously with the clamped workpiece.
  • the workpiece to be machined is first clamped transversely to the feed direction to about half the width. Then the workpiece is machined on one side. Then the workpiece is stretched so that it is clamped from the opposite side to about half the width. In the further course, the workpiece is then further processed.
  • the workpiece always remains clamped during re-clamping.
  • the first tensioning carriages clamp the workpiece while it is engaged by the second tensioning carriages. Only when the second clamping carriages have clamped the workpiece, the collets of the first clamping carriages are released. In this way it is ensured that the workpiece during transfer or when re-clamping its intended for a high-quality processing position.
  • the workpiece is guided through two successive processing stations and processed there each.
  • different processing methods can be used.
  • the workpiece is machined differently in at least one, but preferably in both processing stations.
  • sawing, milling or drilling operations can be performed on the workpiece.
  • At least one workpiece is simultaneously processed in each case in two processing stations.
  • Each workpiece is clamped with corresponding clamping carriages.
  • workpieces 1 made of wood are processed in a manner to be described on at least two opposite sides.
  • the elongate workpieces 1 are fed transversely to their longitudinal direction via a transverse conveyor 2.
  • the workpieces 1 may previously be planed or otherwise processed, for example.
  • the workpieces 1 pass from the cross conveyor 2 on clamping carriage 3, on which the workpieces 1 are tightened.
  • the device has several tensioning carriages 3, each for can be moved and positioned individually. Depending on the length of the workpiece 1, a corresponding number of clamping carriage 3 is used to clamp the workpiece 1.
  • the clamping carriage 3 can be moved individually in the longitudinal direction of the workpieces 1 and in the feed direction 6, the workpieces 1 can be stretched flexibly, depending on the length and depending on the area where machining is to be performed on the workpiece.
  • the tensioning carriage 3 are then moved with the tensioned workpiece 1 at a synchronous speed.
  • the workpiece 1 for example, processed longitudinally or positioned for processing.
  • the tensioning carriage 3 On the tensioning carriage 3, the workpieces are transported along a transport path 4.
  • the workpieces 1 are stretched on the tensioning carriage 3 so that they are transported in their longitudinal direction through the device.
  • a first processing station 5 the workpieces are processed at least on their right in the direction of transport 6 long side.
  • a transfer area 7 in which the workpieces 1 are taken over by second tensioning carriage 8, which are arranged approximately in mirror image to the first tensioning carriage 3.
  • second tensioning carriage 8 On the second clamping carriage 8, the machined on the right longitudinal side workpieces 1 are recorded so that they can be processed in a second processing station 9 at least on its left in the transport direction 6 longitudinal side.
  • the processed on both sides of the workpieces 1 1 handed over a cross conveyor 10, which transports the workpieces 1 transversely to its longitudinal direction from the device and optionally supplies a downstream processing.
  • the clamping carriage 8 are as well as the clamping carriage 3 independently moved and positioned individually.
  • the workpieces 1 are taken over in a manner to be described by the clamping carriage 8 so that they can be further processed in the processing station 9.
  • the tensioning carriage 8 are also moved with the tensioned workpiece 1 at a synchronous speed.
  • the tensioning carriage 3 travel on a rail 11, which is located on the left in the transport direction 6 longitudinal side of the transport path.
  • the tensioning carriage 8 run on a rail 12 which is provided on the right in the transport direction 6 longitudinal side of the transport path 4. In the transfer area 7, the rails 11, 12 overlap each other. This makes it possible that the clamping carriage 3, 8 can be positioned side by side so that the workpiece 1 can be taken over without change in position of the second clamping carriage 8.
  • part of the tensioning carriage 3 is initially in a parking position 13.
  • a different number of tensioning carriages 3 is used.
  • Each tensioning carriage 3 has an upper and a lower collet 14, 15 (FIG. Fig. 6 ), with which the workpiece 1 at the top and bottom 18, 19 can be clamped.
  • At least the upper collet 14 is vertically adjustable to the transport direction 6, so that the workpiece 1 can easily get on the clamping carriage 3 and can be stretched on it.
  • the adjustment is preferably pneumatic, but can also be done hydraulically or by electric motor.
  • the lower collet 15 is height-adjustable to pass the workpiece 1 in a manner to be described to the second clamping carriage 8 can.
  • a support could be provided, which is advantageous height adjustable or easily lowered.
  • each clamping carriage 3 is advantageous with at least one stop 17 (FIG. Fig. 6 ), which is adjustable transversely to the transport direction 6.
  • the stop 17 By means of the stop 17, the workpieces 1 can be accurately aligned with the tensioning carriage 3, before being tensioned with the collets 14, 15 on the tensioning carriage 3.
  • the upper collets 14 are height adjustable.
  • the lower collets 15 serve as a support for the workpiece 1.
  • the upper and the lower collets 14, 15 are mutually adjustable in opposite directions.
  • the two collets 14, 15 extend on the top and the bottom 18, 19 of the workpiece 1 only so far that they do not interfere with or affect the processing of the workpiece 1 in the processing station 5.
  • the stop 17 may also be provided as a separate unit in the device, that is not on the clamping carriage 3. Even then, the workpieces 1 can be clamped exactly on the clamping carriage 3.
  • the processing station 5 has a plurality of processing units, in the embodiment a saw 20, a drilling unit 21 and a milling unit 22.
  • the saw 20 With the saw 20, the workpiece 1 is first sawed transversely to its longitudinal direction to the required length. It is possible to design the saw 20 or the circular saw blade so that they can be set at an angle, so that the workpiece can be sawn at the end face also at an angle.
  • the drilling unit 21 has at least one drill 23, with which the required holes can be mounted in the workpiece.
  • the drill 23 on the right in the transport direction 6 longitudinal side 24 of the workpiece 1 introduce the holes.
  • the drilling unit 21 is advantageously pivotable about different axes, so that the holes can not only be introduced vertically into the longitudinal side 24, but also at different angles and / or inclined. It is also possible to adjust the drilling unit 21 so that holes can be made with the drill 23 in the upper side 18 of the workpiece 1. These holes can be perpendicular to the workpiece top 18, but also at different angles to her. Since the clamping carriage 3 are each arranged at greater distances from each other, the holes can be provided easily in the area between. Also in the end faces of the workpiece 1 holes can be attached.
  • the right longitudinal side 24 of the workpiece 1 is processed.
  • the workpiece 1 does not have to be machined over the entire length of the longitudinal side 24. It is possible to make only at certain points on the long side 24 milling, as determined by the Fig. 2 to 5 will be explained in one embodiment.
  • the workpieces can be processed 1 to about half the cross section on the entire longitudinal side with high accuracy and quality in the flow.
  • each tensioning carriage 8 After passing through the processing station 5, the tensioning carriage 3 reach the rail 11 in the transfer area 7. Here are the second tensioning carriage 8.
  • Each tensioning carriage 8 also has collets 25, 26 (FIG. Fig. 1 and 6 ), which are arranged according to the collets 14, 15 in pairs one above the other. With the collets 25, 26, the workpiece 1 is clamped to the top 18 and bottom 19. The collets 25, 26 extend from the right longitudinal side 24 in the direction of the left in the direction of transport 6 longitudinal side 27 of the workpiece. 1
  • the machined in the processing station 5 workpiece 1 is passed to the clamping carriage 8.
  • the clamping carriage 3, 8 are arranged in the transfer area 7 to each other so that the collets 25, 26 of the clamping carriage 8 are opposite to the collets 14, 15 of the clamping carriage 3.
  • This has the advantage that the workpiece 1 may initially remain clamped on the tensioning carriage 3 when the collets 25, 26 are applied to the workpiece 1.
  • the collets 14, 15 of the clamping carriage 3 are lifted so that the clamping carriage 3 can go back to the starting position to clamp in the region of the cross conveyor 2, the next workpiece 1.
  • the workpiece 1 With the clamping carriage 8, the workpiece 1 is transported through the processing station 9. It has several processing units, in the embodiment a drilling unit 28 with at least one drill 29, then a milling unit 30 and finally a saw unit 31. With the drill 29 of the drilling unit 28 holes can be mounted in the workpiece. In the in Fig. 1 shown position, a bore in the left in the transport direction 6 longitudinal side 27 of the workpiece 1 is introduced with the drill 29.
  • the drilling unit 28 is advantageously adjustable about different axes, so that the drill 29 can be brought into different positions with respect to the workpiece 1. Thus, with the drill 29 on the top 18 of the workpiece 1 a bore can be introduced.
  • this hole not only perpendicular to the transport direction 6, but depending on the setting of the drilling unit 28 in different angles of inclination. Also in the longitudinal side 27 and in the end face 36, 37 can be introduced in different directions extending bores, depending on the position of the drill 29th
  • corresponding milling work on the workpiece 1 are made, for example, on the longitudinal side 27 or at the end face.
  • the cutting unit 31 following the milling unit 30 has a chain saw 32, with which slots in the workpiece 1 can be produced.
  • the saw unit 31 or the chain saw 32 can be set in different positions so that slits running on the workpiece 1 in different directions can be attached.
  • the chainsaw 32 can also be adjusted so that, for example, at the end face of the workpiece 1, a corresponding slot can be sawn.
  • the tensioning carriages 8 After leaving the processing station 9, the tensioning carriages 8 reach the area of the transverse conveyor 10. After loosening the collets 25, 26, the machined workpiece 1 is transferred to the transverse conveyor 10. Then the tensioning carriage 8 drive back into the transfer area, to take over the next, in the meantime in the processing station 5 machined workpiece 1.
  • the transfer of the workpiece 1 in the transfer area 7 is advantageously carried out automatically.
  • the clamping carriage 3, 8 are independently adjustable in the transport direction 6, the workpiece 1 can be optimally clamped.
  • the Fig. 2 to 5 show by way of example a workpiece 1, which has been processed in the two processing stations 5, 9.
  • the exemplified workpiece 1 is a Kehlsparren having the longitudinal sides 24 and 27. Near the two ends, a groove 33, 34 is provided in the longitudinal side 24, which has been introduced by the milling unit 22 of the processing station 5. In the area between the grooves 33, 34, which extend over the thickness of the workpiece 1, the longitudinal side 24 is flat.
  • the end faces 36, 37 are bevelled and profiled.
  • the end face 36 is roof-shaped in cross section, while the end face 37 has a V-shaped recess 38 over its length.
  • the profiling of the previously obliquely sawn end faces 36, 37 can be performed with the milling unit 22 or 30.
  • the end face 36 can also be processed by two saw cuts in two different pivot positions of the saw.
  • the workpiece 1 according to the Fig. 2 to 5 is to be understood only as an example. From the machining of this workpiece results that in the respective processing stations 5, 9 not all processing units must be used. Depending on the processing task, only one or only two or also all three units are used in the processing stations 5, 9.
  • the number of processing units in the processing stations 5, 9 is also only exemplary.
  • the processing stations may have fewer or more processing units, as exemplified in Fig. 1 is shown.
  • the processing stations 5, 9 may contain different numbers and / or different types of processing units, in addition to the described example, a marking unit, with which the workpieces 1 itself or any reference lines for the later use of the workpieces can be marked.
  • the processing units in the processing stations 5, 9 are advantageously interchangeable, so that it is possible, depending on the processing task, to load the corresponding processing units into the respective processing station 5 and / or 9.
  • various tools can be substituted, depending on the type of processing task.
  • the necessary tools are available in tool magazines near the respective processing units, from which they can be removed automatically and quickly and loaded into the processing unit.
  • the workpieces 1 are processed in two steps from the right and left, with the workpieces are clamped during these operations.
  • the workpieces 1 can be processed in the pass on the entire longitudinal side with high accuracy and quality.
  • the clamping carriage 3 and 8 can be easily moved next to each other in the transfer area 7, the support and the lower collet 15, 26 of the clamping carriage 3, 8 slightly downwards adjustable. To transfer the pads or the lower collets 15 of those clamping carriage, which do not tension the workpiece, lowered. Likewise, it is also possible to slightly raise the still clamped with the clamping carriage 3 workpiece when entering the transfer area, so that the clamping carriage 3, 8 can be easily moved next to each other.
  • the workpieces 1 can first be sawn at both end faces 36, 37. Subsequently, the one longitudinal side of the workpieces is partially or over their entire length machined by milling and / or drilling.
  • the device can also be designed mirror-inverted to the X and / or Y axis.
  • the workpieces are in plan view accordingly FIG. 1 seen from the bottom right fed, the passage direction through the device is from right to left and the removal advantageous to the top left.
  • the feeder In a mirror-inverted arrangement to the Y axis, the feeder would be from top left, the direction of passage from left to right, and the bottom right removal; and finally, in a mirror-inverted arrangement to the X and Y axes, the feeder would be from the bottom left, the pass direction would also be from left to right, and the top right.
  • the first tensioning carriages 3 are always opposite the feeder provided and executed with the stops, or in the area of the first tensioning carriage, a separate stop for the workpieces is provided opposite the feed.
  • only one processing station is provided in the device in which the workpiece can be processed completely and on all sides.
  • the transfer of the workpieces can be done in the processing station or in the area before or after this processing station, the removal before or after this processing station.
  • the production capacity is significantly limited in such training.

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Wood Science & Technology (AREA)
  • Forests & Forestry (AREA)
  • Multi-Process Working Machines And Systems (AREA)
  • Chemical And Physical Treatments For Wood And The Like (AREA)
  • Electrical Discharge Machining, Electrochemical Machining, And Combined Machining (AREA)
  • Diaphragms For Electromechanical Transducers (AREA)
  • Adornments (AREA)
  • Veneer Processing And Manufacture Of Plywood (AREA)

Claims (12)

  1. Agencement pour l'usinage de pièces d'oeuvre (1) allongées, en bois, matière plastique et matériaux similaires, comprenant un dispositif de serrage présentant des pinces de serrage pour les pièces d'oeuvre (1, qui ont une face supérieure et une face inférieure (18, 19) contre lesquelles s'appuient respectivement une pince de serrage supérieure et une pince de serrage inférieure (14, 15; 25, 26), dans la position de serrage,
    caractérisé en ce que le dispositif de serrage est constitué d'au moins deux premiers chariots de serrage (3), qui peuvent être positionnés indépendamment les uns des autres, et d'au moins deux deuxièmes chariots de serrage (8), qui peuvent être positionnés indépendamment les uns des autres, en ce que les chariots de serrage (3, 8) présentent chacun la pince de serrage supérieure et la pince de serrage inférieure (14, 15; 25, 26), qui serrent la pièce d'oeuvre (1) entre la face supérieure et la face inférieure (18, 19), et en ce que les pinces de serrage (14, 15) des premiers chariots de serrage (3) serrent la pièce d'oeuvre (1) à partir de l'un des côtés longitudinaux, et les pinces de serrage (25, 26) des deuxièmes chariots de serrage (8), à partir de l'autre côté longitudinal.
  2. Agencement selon la revendication 1,
    caractérisé en ce que les premiers chariots de serrage (3) sont agencés de manière symétrique inverse par rapport aux deuxièmes chariots de serrage (8).
  3. Agencement selon la revendication 1 ou la revendication 2,
    caractérisé en ce que l'un au moins des chariots de serrage (3, 8) est muni d'au moins une butée (17) pour la pièce d'oeuvre (1).
  4. Agencement selon la revendication 3,
    caractérisé en ce que la butée (17) est réglable transversalement à la direction de déplacement (6) des chariots de serrage (3, 8).
  5. Agencement selon l'une des revendications 1 à 4,
    caractérisé en ce que les chariots de serrage (3, 8) avec la pièce d'oeuvre (1) qui y est serrée, peuvent être déplacés de manière synchrone.
  6. Procédé pour l'usinage de pièces d'oeuvre en bois, matière plastique et matériaux similaires, à l'aide d'un agencement selon l'une des revendications 1 à 5, selon lequel la pièce d'oeuvre est serrée, transportée dans la direction d'avance, et usinée,
    caractérisé en ce que l'on serre la pièce d'oeuvre (1) jusqu'à environ à la moitié de sa largeur transversalement à la direction d'avance (6), en ce que l'on usine ensuite un côté de la pièce d'oeuvre (1), en ce que l'on effectue ensuite un changement de serrage de la pièce d'oeuvre (1) de manière telle qu'elle soit serrée à partir du côté opposé jusqu'à environ la moitié de sa largeur, et en ce que l'on poursuit ensuite l'usinage de la pièce d'oeuvre (1).
  7. Procédé selon la revendication 6,
    caractérisé en ce que la pièce d'oeuvre (1) reste constamment serrée lors de l'opération de changement de serrage.
  8. Procédé selon la revendication 6 ou la revendication 7,
    caractérisé en ce que la pièce d'oeuvre (1) est serrée sur un côté dans la direction d'avance (6), et est usinée sur le côté opposé.
  9. Procédé selon la revendication 6 ou la revendication 7,
    caractérisé en ce que la pièce d'oeuvre (1) est serrée sur un côté dans la direction d'avance (6), et est usinée sur ce côté.
  10. Procédé selon l'une des revendications 6 à 9,
    caractérisé en ce que la pièce d'oeuvre (1) est transportée, pour son usinage, à travers deux postes d'usinage (5, 9).
  11. Procédé selon la revendication 10,
    caractérisé en ce que la pièce d'oeuvre (1) est usinée différemment dans l'un au moins des postes d'usinage (5, 9).
  12. Procédé pour l'usinage de pièces d'oeuvre en bois, matière plastique et matériaux similaires, à l'aide d'un agencement selon l'une des revendications 1 à 5, selon lequel la pièce d'oeuvre est serrée, transportée dans la direction d'avance, et usinée,
    caractérisé en ce que l'on procède à l'usinage respectivement d'au moins une pièce d'oeuvre (1) simultanément dans deux postes d'usinage (5, 9).
EP08801576A 2007-08-28 2008-08-14 Installation de traitement de pieces en bois, matiere plastique et analogues, et procede de traitement de telles pieces Not-in-force EP2185331B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SI200830258T SI2185331T1 (sl) 2007-08-28 2008-08-14 Naprava za obdelavo obdelovancev iz lesa, umetne snovi in podobnega in pa postopek za obdelavo takih obdelovancev

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102007040580A DE102007040580B3 (de) 2007-08-28 2007-08-28 Vorrichtung zum Bearbeiten von Werkstücken aus Holz, Kunststoff und dergleichen sowie Verfahren zum Bearbeiten von solchen Werkstücken
PCT/EP2008/006677 WO2009030348A1 (fr) 2007-08-28 2008-08-14 Installation de traitement de pièces en bois, matière plastique et analogues, et procédé de traitement de telles pièces

Publications (2)

Publication Number Publication Date
EP2185331A1 EP2185331A1 (fr) 2010-05-19
EP2185331B1 true EP2185331B1 (fr) 2011-03-02

Family

ID=39865126

Family Applications (1)

Application Number Title Priority Date Filing Date
EP08801576A Not-in-force EP2185331B1 (fr) 2007-08-28 2008-08-14 Installation de traitement de pieces en bois, matiere plastique et analogues, et procede de traitement de telles pieces

Country Status (5)

Country Link
EP (1) EP2185331B1 (fr)
AT (1) ATE500042T1 (fr)
DE (2) DE102007040580B3 (fr)
SI (1) SI2185331T1 (fr)
WO (1) WO2009030348A1 (fr)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102528864B (zh) * 2012-01-16 2013-11-13 佛山市顺德区新马木工机械设备有限公司 一种数控多轴榫槽机
DE102014222423A1 (de) 2014-11-03 2016-05-04 Homag Holzbearbeitungssysteme Gmbh Spannvorrichtung
DE102020002319A1 (de) * 2020-04-09 2021-10-14 Michael Weinig Aktiengesellschaft Spanneinrichtung für Werkstücke aus Holz, Kunststoff, Aluminium und dergleichen sowie Anlage mit einer solchen Spanneinrichtung

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19752685A1 (de) * 1997-11-28 1999-07-01 Ima Maschinenfabriken Klessmann Gmbh Maschine zum Bearbeiten von Fensterrahmen-Holmen
DE10137839C5 (de) * 2001-08-02 2012-06-21 Michael Weinig Ag Maschine zum Bearbeiten von Werkstücken aus Holz, Kunststoff und dergleichen
DE102004027888B4 (de) * 2004-05-27 2007-01-04 Michael Weinig Ag Vorschubeinheit für eine Maschine zum Bearbeiten von Werkstücken aus Holz, Kunststoff oder dergleichen sowie Verfahren zum Bearbeiten solcher Werkstücke
ITMO20060021A1 (it) * 2006-01-20 2007-07-21 Scm Group Spa Macchina utensile

Also Published As

Publication number Publication date
DE502008002754D1 (de) 2011-04-14
WO2009030348A1 (fr) 2009-03-12
EP2185331A1 (fr) 2010-05-19
SI2185331T1 (sl) 2011-07-29
ATE500042T1 (de) 2011-03-15
DE102007040580B3 (de) 2009-04-09

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