MOVING SYSTEM AND GEAR-CUTTING MACHINE
20210154759 · 2021-05-27
Inventors
- Matthias Philippin (Rutesheim, DE)
- Uwe Rusch (Ludwigsburg, DE)
- Daniel Staiger (Pfullingen, DE)
- Peter Müller (Bietigheim-Bissingen, DE)
- Sabrina Gressler (Ingersheim, DE)
- Andreas Gross (Marbach, DE)
- Dietmar Kohler (Illingen, DE)
Cpc classification
Y10T409/100954
GENERAL 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
B23Q7/02
PERFORMING OPERATIONS; TRANSPORTING
B23F23/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a moving system (100) for transposing workpieces that are provided for gear cutting on a workpiece spindle (200) and have a workpiece axis of rotation, from a first position (A), taken up while they are being fed, into a second position (C) that differs from the first position by at least a smaller distance between the workpiece axis of rotation and the workpiece spindle axis, having a first movement unit (36, 32, 34) which transposes a workpiece from the first position into a third position (B), different from the first and the second position, along a first movement path (AB), and a second movement unit (35) which transposes the workpiece from the third position into the second position along a second movement path (BC), wherein the moving system is also designed to transpose machined workpieces back out of the second position and to hold and move more than one workpiece at the same time, wherein, while it is being moved on the first and on the second movement path, the workpiece is held by one and the same holding unit (10, 10′) that directly holds the workpiece, without a movement caused by the second movement unit entailing a movement of the first movement unit.
Claims
1. Moving system (100) for transposing workpieces that are provided for gear cutting on a workpiece spindle (200) and have a workpiece axis of rotation, from a first position (A), taken up while they are being fed, into a second position (C) that differs from the first position by at least a smaller distance between the workpiece axis of rotation and the workpiece spindle axis, having a first movement unit (36, 32, 34) which transposes a workpiece from the first position (A) into a third position (B), different from the first and the second position, along a first movement path (AB), and a second movement unit (35) which transposes the workpiece from the third position into the second position along a second movement path (BC), wherein the moving system is also designed to transpose machined workpieces back out of the second position (C) and to hold and move more than one workpiece at the same time, characterized in that, while it is being moved on the first and on the second movement path, the workpiece is held by one and the same holding unit (10, 10′) that directly holds the workpiece, without a movement caused by the second movement unit entailing a movement of the first movement unit.
2. Moving system according to claim 1, wherein the first movement unit and/or the second movement unit have only one degree of freedom of movement.
3. Moving system according to claim 1, wherein the second movement unit is a rotary movement unit.
4. Moving system according to claim 1 wherein the first movement unit is a linear movement unit for a vertical movement.
5. Moving system according to claim 1 wherein the second movement path is curved and takes the form of an arc portion.
6. Moving system according to claim 1 comprising a third movement unit, which causes the workpiece that is still held directly by the holding unit to be transposed from the second position (C) along a third movement path (CD) into a fourth position (D) that differs from the second position and in which the gear-cutting machining takes place.
7. Moving system according to claim 1 comprising a guide arrangement (26, 16), which guides the holding unit during the movement on the first movement path and moves together with the movement along the second movement path.
8. Moving system according to claim 1 comprising a running rail (38) on which the holding unit rolls or slides during the movement along the second movement path.
9. Moving system according to claim 3 wherein the rotary movement unit is clocked in a 360°/n step, where n is 2, 3 or 4.
10. Moving system according to claim 1 comprising n≥2 holding units (10; 10′), which are identically formed.
11. Moving system according to claim 10, which is controlled by the control system thereof in such a way that a workpiece held by a holding unit (10) leaves the third position (B) and a workpiece held by another holding unit (10′) leaves the second position (C) in a coupled and simultaneous manner under the action of the second movement unit.
12. Moving system according to claim 1 wherein, during the movement on the first and/or third movement path, the holding unit(s) (10; 10′) have no coupling to the first and/or third movement unit that requires releasing, aside from a merely bracing coupling.
13. Moving system according to claim 7 comprising a rotary cage (20), of which the support structure, acting parallel to the axis of rotation of the second movement unit, is formed at least in part by running bars (26) of the guide arrangement (26, 16).
14. Moving system according to claim 1 comprising a column-like support (30) on which the movement units (10, 10′) are arranged and about which the rotary cage (20) can rotate.
15. Moving system according to claim 1 comprising one drive (36, 35, 36′) for each movement unit.
16. Moving system according to claim 1 wherein the holding unit has two holding arms (11), the distance between which can be altered.
17. Moving system according to claim 16, wherein the holding arms have releasably attached holding jaws (12), of which the face facing the workpiece is adapted to the workpiece contour.
18. Moving system according to claim 1 comprising a feeding and removal device (80), which is designed as a continuous feeder and which brings the workpieces into the first position at the height of the end of said device facing the ground, between 75 cm and 135 cm above the ground.
19. Gear-cutting machine, comprising at least one workpiece spindle (200) for receiving a workpiece and a workpiece loading and unloading system, characterized in that the loading and unloading system has a moving system (100) according to claim 1.
20. Moving system according to claim 5 wherein the second movement path takes the form of a semicircle.
Description
[0031] Further features, details and advantages of the invention will be apparent from the following description, with reference to the accompanying drawings, in which:
[0032]
[0033]
[0034]
[0035]
[0036]
[0037] As can be seen in
[0038] In the lower region of the column 30, a running rail 32 that is axial in the column direction is arranged (see
[0039] Referring to
[0040] On the column 30, a running rail 38 formed in the shape of an arc is fastened at a height below the gear rim 24. However, the running rail 38 is not continuous in the region of the running rail 32, but rather a gap 38L is provided, through which the roller 18 can pass during the vertical movement thereof when being entrained by the tappet 34. After vertical movement of the holding unit 10, during which the workpiece 2 moves along the first movement path that transposes it from the first position into the third position, the holding unit 10 can, as shown in the embodiment (180° step), be rotated through 180°, by rotational movement of the rotary cage 20, into the position taken up by the holding unit 10′ in the drawing of
[0041] On this machining side of the column 30, a further vertical movement unit is provided, which is formed substantially identically to the previously described vertical movement unit on the side of the column 30 remote from the machining. Using this (third) movement unit, the workpiece 2 can be placed on a stretching device (not shown in
[0042] The positions passed through by a workpiece 2 during the movement of the moving system 100 are shown again in
[0043] It can easily be seen from
[0044]
[0045] The workpieces may be disc-shaped gearwheels or gearwheel blanks, as in
[0046] However, the coupling shown, comprising the tailstock arrangement 240, is only one possible configuration and coupling system of the moving system 100, which may also be provided independently.
[0047] Also, incidentally, the aforementioned embodiments of the invention are not to be treated as limiting the invention. Rather, individual features of the invention and of the following claims may be essential for implementing the invention in the various embodiments thereof.