Component connection and method for the detachable connection of the components of a component connection
US-9222500-B2 · Dec 29, 2015 · US
US2016144464A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016144464-A1 |
| Application number | US-201414904574-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 23, 2014 |
| Priority date | Jul 23, 2013 |
| Publication date | May 26, 2016 |
| Grant date | — |
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A workpiece support for use in a machine tool for the purpose of placing flat workpieces in a machining station is provided. The flat workpiece is supported within a horizontal plane by supporting elements, and the supporting elements are arranged in at least two rows of supports. The rows of supports can be displaced along at least one axis of the horizontal plane.
Opening claim text (preview).
1 . A workpiece support for use in a machine tool for the purpose of placing flat workpieces in a machining station, wherein the workpiece is supported within a horizontal plane by spaced supporting elements, wherein the supporting elements are arranged in at least two rows of supports, and the rows of supports are displaceable along at least one axis of the horizontal plane. 2 . The workpiece support according to claim 1 , wherein the supporting elements consist of a roller carrier with rollers. 3 . The workpiece support according to claim 1 , wherein the supporting elements are arranged in a housing having an angled compartment at the base thereof. 4 . The workpiece support according to claim 2 , wherein the rollers include top rollers and bottom rollers, and the top rollers are connected to the bottom rollers via a drive. 5 . The workpiece support according to claim 4 , wherein the bottom rollers are connected to drive rollers. 6 . The workpiece support according to claim 1 , wherein the rows of supports are spaced from one another by distance (d 1 ). 7 . The workpiece support according to claim 6 , wherein the supporting elements are spaced from one another by distance (d 2 ). 8 . The workpiece support according to claim 7 wherein distance (d 2 ) is smaller than distance (d 1 ). 9 . The workpiece support according to claim 4 wherein the drive is a belt drive or a chain drive or a direct drive. 10 . The workpiece support according to claim 1 for use in a cutting or shaping machining station of a machine tool for machining flat material in continuous or batch operation. 11 . The workpiece support according to claim 1 , wherein each of the supporting elements includes a roller carrier which terminates at a top end and a bottom end, a top roller is located at the top end on which the workpiece rests, and a bottom roller is connected to the top roller via a vertical belt drive. 12 . The workpiece support according to claim 11 , wherein the bottom roller extends along its axis into a drive roller, the drive roller is connected via a horizontal drive belt to a motor, and the motor drives the horizontal drive belt. 13 . The workpiece support according to claim 12 , wherein all of the drive rollers in a row of supports are actuated, the drive rollers move the bottom rollers, and the bottom rollers move the top rollers via the vertical drive belt when the motor is activated. 14 . The workpiece support according to claim 1 , wherein each supporting element is spaced from the adjacent supporting element by an interstice, each row of supports is spaced from the adjacent row of supports by an interstice, and the rows of supports are moveable linearly from left to right to allow a cutting process to be carried out along at least one of the interstices. 15 . A method for placing a workpiece in a machining station, comprising the steps of: supporting a workpiece on a horizontal plane by spaced supporting elements, wherein the supporting elements are arranged in at least two rows of supports; and displacing at least one of the rows of supports along the horizontal plane. 16 . The method according to claim 15 , wherein each supporting element is spaced from the adjacent supporting element by an interstice, each row of supports is spaced from the adjacent row of supports by an interstice; and further comprising the step of: cutting the workpiece along at least one of the interstices. 17 . The method of claim 16 , wherein the cutting step includes laser cutting the workpiece while the workpiece is supported by the supporting elements and after displacing at least one of the rows of supports. 18 . The method according to claim 15 , wherein each of the supporting elements includes a roller carrier which terminates at a top end and a bottom end, a top roller is located at the top end on which the workpiece rests, a bottom roller is connected to the top roller by a vertical belt drive, the bottom roller extends along its axis into a drive roller, the drive roller is connected via a horizontal drive belt to a motor; and further comprising the steps of: activating the motor; actuating all of the drive rollers in a row of supports via the activated motor; moving the bottom rollers and the vertical drive belt via the actuated drive rollers; and moving the top rollers via the moving vertical drive belt. 19 . The method according to claim 15 including the step of displacing a plurality of the rows of supports along the horizontal plane independent of one another. 20 . The method according to claim 15 including the step of displacing all of the rows of supports at once in the transverse direction.
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