IP Library Granted Patent US 10,960,505
Granted Patent B2
US 10,960,505 · App. 16/327,925 · Granted Mar 30, 2021

Coupling device

Inventors: Steffen Giesler (Albstadt, DE); Andrea Strobel (Reutlingen, DE)
Assignee: SAUTER FEINMECHANIK GMBH
B23Q3/12B23Q5/20B23B29/32B23Q2220/002Y10T29/5155Y10T29/5167
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Quick Facts
Patent No.
US 10,960,505
App. No.
16/327,925
Granted
Mar 30, 2021
Kind
B2
Abstract

A coupling device is for the reversible establishment of a drive connection between a driving unit ( 13 ) of a tool turret and a driven unit ( 46 ) of a tool receptacle ( 36 ) attached to the tool turret and in which a machining tool is able to be received. In a coupling position, a drive shaft ( 14 ) of the driving unit ( 13 ) is engaged by way of its external toothing ( 32 ) with an internal toothing of a driven shaft ( 44 ) of the driven unit ( 46 ). For a collision-free orientation of the external toothing ( 32 ) with respect to the internal toothing, before coupling, an aligning device is used. The orienting device passes through parts of the driven shaft ( 44 ) and has a control on one side for the cooperation with the drive shaft ( 13 ) and an aligner that is actuable by the control on the other side. The aligner is securable to the tool receptacle.

Claims (26)

1. A tool turret, comprising:

a drive unit having a drive shaft with an external gearing;

a rotatable tool holder disk;

a tool holder receivable by and rotatable with the tool holder disk and having an output unit and capable of retaining a machining tool, the output unit having an output shaft with an internal gearing, the internal gearing engaging the external gearing when the external gearing is in a first clutch position, and the external gearing and the internal gearing forming a coupling that detachably engages and forms a drive connection between the drive unit and the output unit such that the drive unit rotationally drives the output shaft; and

an aligner ensuring a collision-free alignment between the external gearing and the internal gearing prior to engagement of the external gearing and the internal gearing, the aligner including on one side thereof a control that interacts with the drive shaft, and the aligner including, on a side thereof that is opposite the one side, an engager that is moveable so as to engage the tool holder, wherein movement of the control moves the engager.

2. A tool turret according to claim 1 wherein

the internal gearing is at an end of the output shaft, and receives the external gearing of the drive shaft of the drive unit in a coupled state of the coupling, the tool holder encompassing the output shaft and the aligner at least partially.

3. A tool turret according to claim 1 wherein

the drive shaft of the drive unit is rotatably supported in a shaft holder, the drive shaft and the shaft holder being moveable between: (i) a coupling position in which the external gearing is coupled to the internal gearing, and (ii) a decoupling position in which the external gearing is decoupled from the internal gearing.

4. A tool turret according to claim 3 wherein

the control of the aligner is biased by an energy store to a position at which the control protrudes relative to parts of the tool holder and the engager is engaged with the tool holder; and

wherein when the drive shaft and the shaft holder are in the coupling position, the control contacts the drive shaft and the engager is disengaged from the tool holder.

5. A tool turret according to claim 3 wherein

the aligner further comprises a rod component extending through parts of the output shaft, and wherein the control is a control disk, and wherein the engager is an engagement bolt aligning the external gearing and the internal gearing, the engagement bolt being attached to the rod component and being fixable in pocket-shaped or groove-shaped recesses in wall sections of the tool holder.

6. A tool turret according to claim 5 wherein

the rod component has a centering facility at a free end of the rod component adjacent to the engagement bolt, the centering facility being engaged with parts of the output shaft of the tool holder when the drive shaft and the shaft holder are in the coupling position.

7. A tool turret according to claim 3 wherein

the shaft holder is movable backward into the decoupling position by introduction of hydraulic pressure and is moved forward into the coupling position by an energy store when the hydraulic pressure is released.

8. A tool turret according to claim 7 wherein

the energy store is a compression spring.

9. A tool turret according to claim 1 wherein

the control is movable along an axis, and wherein the control is surrounded by the internal gearing of the output shaft in every one of the possible axial displacement positions of the control.

10. A tool turret according to claim 1 wherein

the tool holder is fixed to a circumference of the tool holder disk.

11. A tool turret according to claim 1 wherein

the internal gearing is at a free end of the output shaft and a portion of the aligner passes through the internal gearing.

Assignments (3)
CHANGE OF NAME Recorded Aug 11, 2023
From: ZEITFRACHT GMBH & CO. KGAA
To: KOLIBRI BETEILIGUNGSGESELLSCHAFT MBH & CO. KGAA
Reel/Frame 064558/0867 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2022
From: SAUTER FEINMECHANIK GMBH
To: ZEITFRACHT GMBH & CO. KGAA
Reel/Frame 058948/0598 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2019
From: GIESLER, STEFFEN; STROBEL, ANDREA
To: SAUTER FEINMECHANIK GMBH
Reel/Frame 048423/0599 →
Priority Claims (1)
DE 10 2016 010 700.6 · Sep 3, 2016 · national
Continuity (1)
Related Publication 20190224795A1 · Jul 25, 2019