WINDING MACHINE
20230294152 · 2023-09-21
Inventors
Cpc classification
B65H2301/4131
PERFORMING OPERATIONS; TRANSPORTING
B21C47/242
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A winding machine (10) for winding and/or unwinding band-shaped or strip-like material (12) has at least one rotary plate (16), which is arranged on a pivot arm (24) and can be driven by means of at least two opposite coupling elements (20, 22), at least one coupling element (20) being associated with the rotary plate (16), and the rotary plate (16) being transferrable by means of a pivot device (30) between at least one decoupled state and at least one coupled state. Because the coupling elements (20, 22) can be positioned opposite one another in a coupling position in a sensor-based manner, this allows a coupling process which is as wear-free as possible.
Claims
1-15. (canceled)
16. A winding machine configured for at least one of winding or unwinding band-shaped or strip-shaped material comprising: a pivot arm; a drive device comprising at least two opposite coupling elements; a pivot device; a rotary plate arranged on the pivot arm and configured to be driven by the drive device, at least one coupling element being associated with the rotary plate, the rotary plate being transferrable by the pivot device between at least one decoupled state and at least one coupled state; and a first sensor; wherein the coupling elements are configured to be positioned opposite one another in a coupling position in a sensor-based manner in using the at least one first sensor.
17. Winding machine according to claim 16, wherein at least one coupling element is configured to be fixed in the coupling position.
18. Winding machine according to claim 17, wherein at least one fixing device is provided, fixing the coupling element in the coupling position in the at least one decoupled state.
19. Winding machine according to claim 16, wherein at least one second sensor is provided, which is configured to detect the position of the coupling element .
20. Winding machine according to claim 16, wherein at least one second sensor is provided with is configured to position the coupling element in the coupling position.
21. Winding machine according to claim 18, wherein the fixing device is arranged on or in the pivot arm.
22. Winding machine according to claim 18, wherein the fixing device comprises at least one component which, in the fixed state, cooperates with at least one counterpiece which is associated with the rotary plate.
23. Winding machine according to claim 18, wherein at least one third sensor is provided, being configured to determine the state of the fixing device.
24. Winding machine according to claim 16, wherein the at least two coupling elements include one first coupling element comprising at least one formed-on portion and one further coupling element in operative connection to the first coupling element and comprising at least one recess, wherein the formed-on portion and the recess engage in one another in a positive-locking manner in the at least one coupled state.
25. Winding machine according to claim 24, wherein an orientation of the formed-on portion and of the recess in the coupling position runs substantially along or parallel to a plane spanned by a pivot movement of the pivot device.
26. Winding machine according to claim 16, wherein the pivot device is a lift-and-pivot device, wherein a lift movement caused by the lift-and-pivot device is configured to actuate the fixing device on the rotary plate.
27. Winding machine according to claim 26, wherein the lift-and-pivot device is a piston-cylinder unit.
28. Winding machine according to claim 16, wherein the at least one drive device is configured in the at least one decoupled state to drive a drum revolving about a horizontal axis and in the at least one coupled state to drive a pallet revolving about a vertical axis.
29. Winding machine according to claim 16, wherein it is configured in the at least one decoupled state for operation with a drum revolving about a horizontal axis, and in that it is configured in the at least one coupled state for operation with a pallet revolving about a vertical axis.
30. A method for transferring at least one rotary plate of a winding machine configured for at least one of winding or unwinding band-shaped or strip-shaped material, between at least one coupled state and at least one decoupled state, wherein the at least one rotary plate is arranged on a pivot arm and driven by at least one drive device comprising at least two opposite coupling elements, at least one coupling element being associated with the rotary plate, comprising the steps: positioning, in a sensor-based manner, at least one first coupling element of the at least two coupling elements opposite at least one further coupling element of the at least two coupling elements in a coupling position, pivoting the rotary plate.
31. A method according to claim 30, further comprising the step: fixing at least one coupling element.
32. A method in accordance with claim 30, further comprising the step: determining the state of the fixing device.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0030] The disclosure will be explained in greater detail hereinafter on the basis of an exemplary embodiment shown in the appended Figures, in which:
[0031]
[0032]
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[0034]
[0035]
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[0041]
DETAILED DESCRIPTION
[0042] The disclosure will now be explained in greater detail by way of example with reference to the appended drawings. However, the exemplary embodiments are examples that are not intended to limit the inventive concept to a specific arrangement. Before the invention is described in detail it should be noted that it is not limited to the various components of the device and the various method steps, since these components and methods may vary. The terms used here are merely intended to describe particular embodiments and are not used in a limiting manner. In addition, if the singular or indefinite article is used in the description or in the claims, this refers also to the plurality of these elements, provided the general context does not clearly indicate otherwise.
[0043]
[0044] A so-called drum mode is shown in
[0045] A drive device 48 is shown in
[0046] An opposite coupling element 20 is associated with the rotary plate 16 in accordance with
[0047] In
[0048] The coupling element 20 is preferably fixed to the rotary plate 16 in
[0049] According to
[0050] If the coupling element 22 is not in the correct, opposite coupling position, the coupling element 22 is preferably brought into the coupling position according to
[0051] In a preferred exemplary embodiment a fixing device 38, for example a linear swing clamp is provided in accordance with
[0052] In a further preferred exemplary embodiment according to
[0053] It is also conceivable that, using the sensor 36, the coupling element 20 can be positioned in the coupling position, for example by means of a second positioning device.
[0054] In
[0055] In a further preferred exemplary embodiment according to
[0056] In a further exemplary embodiment at least a third sensor is provided, which determines the state of the fixing device 38. For example, it is conceivable that the third sensor is arranged on or in the fixing device 38. However, other embodiments are also conceivable, as long as the third sensor determines the state of the fixing device 38. It is conceivable that a pivot movement of the rotary plate 16 cannot be performed as long as the sensor fails to signal that the fixing device 38 is in the fixed state.
[0057] The coupling element 22 preferably has at least one formed-on portion 44 and the coupling element 20 has at least one recess 46 according to
[0058] In a further exemplary embodiment according to
[0059] In a further preferred exemplary embodiment according to
[0060] If, for example, the winding machine 10 is transferred from the drum mode back into the pallet mode, the coupling element 22, if it is not in the coupling position, is first brought into the coupling position. The sensor 32 preferably detects the position of the coupling element 22 and preferably prompts the positioning device to orient the coupling element 22 accordingly if the coupling element 22 is not in the appropriate position. The sensor 36 preferably detects the position of the coupling element 20 or the rotary plate 16. In the drum mode, however, the rotary plate 16 should already be in position since it will have already been fixed beforehand by means of the fixing device 38. The fixing device 38 should likewise be locked. This is determined by the third sensor. If all coupling elements 20, 22 are in position and the third sensor signals that the fixing device is in the fixed state, the pivot movement of the rotary plate 16 is performed by means of the lift-and-pivot device 30.
[0061] In a further preferred exemplary embodiment according to
[0062] According to
[0063] It goes without saying that this description may be subject to a wide range of different modifications, amendments and adaptations that fall within the scope of equivalents to the appended claims.