METHOD FOR CUTTING A GEAR AND GEAR-CUTTING MACHINE
20200361012 · 2020-11-19
Inventors
Cpc classification
B23F5/163
PERFORMING OPERATIONS; TRANSPORTING
G05B19/401
PHYSICS
B23F19/06
PERFORMING OPERATIONS; TRANSPORTING
G05B2219/50063
PHYSICS
International classification
B23F5/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a method for machining a toothing of a workpiece held in a clamping, in which method a toothing tool that rotates about its rotational axis and comprises cutting edges is brought into in particular rolling chip-removing machining engagement with the toothing that in particular rotates about its rotational axis, in order to produce a predetermined tooth flank end geometry in one or more machining passes, wherein during the machining pass which produces the tooth flank end geometry, monitoring responsive to the event of a removed chip being pressed into a machined tooth flank of the toothing by means of the in particular rolling machining process is carried out and, if the monitoring responds, an additional toothing machining process that removes the material protrusion on top of the tooth flank end geometry formed by the chip that was pressed in during the event which occurred is implemented in particular automatically, which process is carried out in particular in the same clamping of the workpiece and in particular by means of the toothing tool itself.
Claims
1. Method for machining a toothing (2) of a workpiece held in a clamping, in which method a toothing tool (1) that rotates about its rotational axis and comprises cutting edges (5) is brought into in particular rolling chip-removing machining engagement with the toothing that rotates about its rotational axis, in order to produce a predetermined tooth flank end geometry in one or more machining passes, characterized in that during the machining pass which produces the tooth flank end geometry, monitoring responsive to the event of a removed chip (4) being pressed into a machined tooth flank of the toothing (2) by means of the rolling machining process is carried out and, if the monitoring responds, an additional toothing machining process that removes the material protrusion on top of the tooth flank end geometry formed by the chip (4) that was pressed in during the event which occurred is implemented automatically, which process is carried out in the same clamping of the workpiece and by means of the toothing tool (1) itself.
2. Method according to claim 1, wherein the monitoring responds when the amplitude (A) of the time curve (8) of a parameter monitored by said monitoring exceeds a predetermined threshold value.
3. Method according to claim 1 wherein the additional toothing machining process is a repetition, at least over a width portion of the toothing, of the machining pass that triggers the monitoring.
4. Method according to claim 1 wherein the additional toothing machining process is carried out using a smaller distance between the tool and the toothing compared with the machining pass which triggers the response of the monitoring.
5. Method according to claim 3 wherein a toothing width range to which the event is to be assigned is determined from the exceedance of the threshold value, and the additional toothing machining process is carried out on the basis of the determined toothing range.
6. Method according to claim 1 wherein two parameters are monitored and the monitoring responds if the amplitudes of the time curves of both parameters exceed respective predetermined threshold values.
7. Method according to claim 2 wherein a monitored parameter shows the workpiece rotation and directly or indirectly shows the rotational speed of the workpiece or the torque of the workpiece rotation.
8. Method according claim 2 wherein a monitored parameter shows the tool rotation, and directly or indirectly shows the rotational speed of the tool or the torque of the tool rotation.
9. Computer program product having a control program which, when implemented on a controller (99) of a toothing machine (100), controls said controller so as to carry out a method according to claim 1.
10. Toothing machine (100) comprising a workpiece spindle for rotationally driving a workpiece held in a clamping connected to the workpiece spindle, a tool spindle for rotationally driving a toothing tool, and a controller (99), characterized in that the controller can control the toothing machine so as to carry out a method according to claim 1.
11. Method according to claim 2 wherein the additional toothing machining process is a repetition, at least over a width portion of the toothing, of the machining pass that triggers the monitoring.
12. Method according to claim 2 wherein the additional toothing machining process is carried out using a smaller distance between the tool and the toothing compared with the machining pass which triggers the response of the monitoring.
13. Method according to claim 4 wherein a toothing width range to which the event is to be assigned is determined from the exceedance of the threshold value, and the additional toothing machining process is carried out on the basis of the determined toothing range.
Description
[0023] Further features, details and advantages of the invention can be found in the following description with reference to the accompanying drawings, in which
[0024]
[0025]
[0026]
[0027]
[0028]
[0029] Furthermore, in this embodiment there is no change in the workpiece clamping in the situation shown between
[0030] After this additional machining process, the desired tooth flank end geometry is present on the toothing 2 without material protrusions caused by the pressed-in chip 4, and the toothing ensures low-noise operation when later used in the gear system and does not pose any increased risks of gear system damage that would otherwise exist if the pressed-in chip 4 had remained undetected and the toothing 2 had been inserted into the gear system in this state.
[0031] The monitoring shown abstractly in
[0032] In the additional machining process shown in
[0033] Since the power skiving wheel 1 is axially advanced with respect to the toothing 2 in order to machine the entire toothing width, the monitoring situation shown in
[0034]
[0035] Although the invention is preferably used for power skiving internal toothings, it is not limited to internal toothings or to the power skiving method. In particular, it is also conceivable to control hobbing machines, shaping machines, scraping machines comprising scraping tools or toothing machines for producing bevel gears by means of their respective control systems according to any of the aforementioned aspects. The toothing machines therefore have at least two operating modes, an additional machining process taking place in one operating mode compared with the other operating mode if the monitoring of the machine control system responds to the potential event of a chip being pressed into the toothing.
[0036] The invention is not limited to the details mentioned in the description of the drawings either. Rather, the features of the above description and the following claims may be essential, individually or in combination, for implementing the invention in its various embodiments.