IP Library Granted Patent US 12,654,946
Granted Patent B2
US 12,654,946 · App. 18/688,611 · Granted Jun 16, 2026

Conveying apparatus with independently movable protuberances for feeding and/or aligning workpieces

Inventors: Marcel Steeb (Baiersbronn-Mitteltal, DE); Jonas Kalmbach (Freudenstadt, DE); Michael Thumm (Neustetten, DE); Michael Müller (Waldachtal, DE)
Assignee: HOMAG GmbH
B65G15/20B65B35/243B65G43/10B65G47/24B65G2203/0233B65G2203/042
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Quick Facts
Patent No.
US 12,654,946
App. No.
18/688,611
Granted
Jun 16, 2026
Kind
B2
Abstract

The present disclosure relates to a conveying apparatus for conveying plate-shaped workpieces. The apparatus can include a workpiece rest, first protuberances, and drive units. The workpiece rest can be designed to allow horizontal movement of a workpiece resting thereon. The first protuberances can be spaced apart in a direction transverse to the conveying direction and can be moved independently of one another. The first protuberances can be moved in the conveying direction and can displace the workpiece while bearing against the rear edge thereof. The drive units can move the first protuberances.

Claims (42)

1 . Conveying apparatus for conveying workpieces in a conveying direction, comprising:

a workpiece rest, which is designed to allow movement of a workpiece resting thereon,

first protuberances, which are spaced apart in a direction transverse to the conveying direction, can be moved in the conveying direction and are designed to displace the workpiece while bearing against the rear edge thereof, and

drive units, which are designed to move the first protuberances,

wherein the first protuberances can be moved independently of one another,

wherein the first protuberances are further configured to align the workpiece,

wherein the drive units have linear motors with movable magnets.

2 . Conveying apparatus according to claim 1 ,

wherein the conveying apparatus further comprises:

second protuberances, which are spaced apart in a direction transverse to the conveying direction, can be moved in the conveying direction and are designed to clamp the workpiece by the second protuberances bearing against the front edge thereof and the first protuberances bearing against the rear edge thereof,

wherein the second protuberances can be moved independently of one another, and independently of the first protuberances.

3 . Conveying apparatus according to claim 1 ,

wherein the conveying apparatus in each case comprises a plurality of first and/or second protuberance pairs.

4 . Conveying apparatus according to claim 1 ,

wherein the conveying apparatus further comprises:

a first sensor for determining a position of a workpiece.

5 . Conveying apparatus according to claim 1 ,

wherein the conveying apparatus further comprises:

a second sensor for determining a position of one or more protuberances.

6 . Conveying apparatus according to claim 1 ,

wherein the first protuberances and/or the second protuberances can be moved in a position-controlled and/or force-controlled manner.

7 . Conveying apparatus according to claim 1 ,

wherein the second protuberances are further designed to align the workpiece.

8 . Conveying apparatus according to claim 1 ,

wherein the conveying apparatus is designed to receive workpieces from an infeed device by the workpieces being clamped on a conveyor belt or a conveyor chain in a vertical direction, and moved along at a defined speed.

9 . Conveying apparatus according to claim 1 ,

wherein the conveying apparatus is designed to feed workpieces to a wood machining device.

10 . Method for aligning and conveying workpieces with a conveying apparatus according to claim 1 , comprising the steps of

moving the first protuberances until they bear against the rear edge of the workpiece,

independently moving the first protuberances so as to align the workpiece, and

moving the first protuberances in a synchronized manner so as to displace the aligned workpiece in the conveying direction.

11 . Method according to claim 10 , wherein the workpiece is aligned at the front edge, by

the first protuberances being moved in a force-controlled manner and the second protuberances being moved in a position-controlled manner, and

the first protuberances hitting the rear edge of the workpiece and the workpiece being displaced and/or rotated in such a way that the front edge of the workpiece bears against the position-controlled second protuberances, while the force-controlled first protuberances bear against the rear edge of the workpiece and clamp said workpiece.

12 . Method according to claim 10 , wherein the workpiece is aligned at the rear edge, by

the first protuberances being moved in a position-controlled manner and the second protuberances being moved in a force-controlled manner,

the first protuberances hitting the rear edge of the workpiece and the workpiece being displaced and/or rotated in such a way that the rear edge of the workpiece bears against the position-controlled first protuberances, while the force-controlled second protuberances bear against the front edge of the workpiece and clamp said workpiece.

13 . Method according to claim 10 wherein a position of a workpiece is detected by a first sensor and the protuberances are moved as a function of the detected position.

14 . Method according to claim 10 wherein a position of one or more protuberances is detected by a second sensor and the protuberances are moved as a function of the detected position.

15 . Method according to claim 10 wherein a plurality of workpieces is simultaneously conveyed in succession and the protuberances are moved in such a way that there is a constant spacing between the individual workpieces.

16 . Conveying apparatus according to claim 1 , wherein the workpiece rest is a roller conveyor, roller rail or air cushion device.

17 . Conveying apparatus according to claim 1 , wherein the magnets can be moved in a circulating manner, and the position of the protuberances in relation to the magnets is adjustable.

Priority Claims (1)
DE 10 2021 122 721.6 · Sep 2, 2021 · national
Continuity (1)
Related Publication 20240375879A1 · Nov 14, 2024
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