Method And Device For Grinding Tooth Flanks Of The Teeth Of Toothed Workpieces, And Tool For Carrying Out The Method
20230219153 ยท 2023-07-13
Inventors
Cpc classification
B23F5/163
PERFORMING OPERATIONS; TRANSPORTING
B23F21/10
PERFORMING OPERATIONS; TRANSPORTING
B23F19/00
PERFORMING OPERATIONS; TRANSPORTING
B23F21/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a method and a device for finishing toothed workpieces (2) using a tool (1) which is designed in the form of a power skiving cut-ter and is rotated by a tool spindle (17) and which has machining teeth (7) that mesh with tooth gaps (6) of the workpiece (2) in a rolling movement, said workpiece being supported by a workpiece spindle (15), which is arranged in a skewed manner relative to the tool rotational axis (4) and is driven synchronously thereto, such that machining edges (8) of the machining teeth (7) machine the tooth flanks (9) of the teeth (5) of the workpiece (2) in the direction of the tooth flank extension. According to the invention, the tool is used such that the machining edges (8) machine the tooth flanks (9) so as to only grind same without removing chips, wherein for this purpose the rounding radius of the machining edges (8) is greater than the chip thickness or cutting depth (E).
Claims
1. A method for finishing toothed workpieces (2) with a tool (1) that is designed in the form of a circular skiving cutter and rotationally driven by a tool spindle (17), wherein said tool has machining teeth (7) that engage into tooth gaps (6) of the workpiece (2) in a rolling motion, and wherein said workpiece is carried by a workpiece spindle (15) that is arranged in a skewed manner relative to the tool rotational axis (4) and driven synchronous thereto such that machining edges (8) of the machining teeth (7) machine the tooth flanks (9) of the teeth (5) of the workpiece (2) in the direction in which the tooth flanks extend, characterized in that the machining edges (8) act upon the tooth flanks (9) in a smoothing manner without metal removal.
2. A device for finishing toothed workpieces (2) with a tool (1) that is designed in the form of a circular skiving cutter and rotationally driven about a tool rotational axis (4) by a tool spindle (17), wherein said tool has machining teeth (7) that engage into tooth gaps (6) of the workpiece (2) in a rolling motion, wherein said workpiece is carried by a workpiece spindle (15) that is arranged in a skewed manner relative to the tool rotational axis (4) and rotationally driven synchronous thereto about a workpiece rotational axis (3), and wherein said device comprises a control (20), which is programmed in such a way that machining edges (8) of the machining teeth (7) machine the tooth flanks (9) of the teeth (5) of the workpiece (2) in the direction in which the tooth flanks extend, characterized in that the control unit (20) is programmed in such a way, the rotational axes (3, 4) are spaced apart from one another in such a way and the machining teeth (7) are designed in such a way that the machining teeth (7) act upon the tooth flanks (9) in a smoothing manner without metal removal.
3. The method according to claim 1 or the device according to claim 2, characterized in that the rounding radius (R) of the machining edges (8) is greater than the machining thickness or cutting depth (E).
4. The method or the device according to one of the preceding claims, characterized in that the workpiece (2) consists of a tempering steel or nitriding steel.
5. The method or the device according to claim 4, characterized in that the tensile strength of the material of the workpiece (2) amounts to no more than 1350 N/mm.sup.2.
6. The method or the device according to one of the preceding claims, characterized in that the workpiece (2) has an internal toothing or an external toothing, the tooth flanks (9) of which are smoothed by the machining edges (8).
7. The method or the device according to one of the preceding claims, characterized in that the machining teeth (7) are formed by an internal toothing or an external toothing.
8. A tool for carrying out the method according to one of the preceding claims, wherein said tool is rotationally driven about a tool rotational axis (4), comprises machining teeth (7) with a machining edge (8) having an edge rounding (R) and is designed in the form of a circular skiving cutter, characterized in that the rounding radius (R) of the machining edge (8) is greater than 50 micrometer.
9. A device, a method or a tool (1), characterized by one or more of the characterizing features of one of the preceding claims.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0006] The invention is described in greater detail below with reference to the attached drawings. In these drawings:
[0007]
[0008]
[0009]
[0010]
DESCRIPTION OF THE EMBODIMENTS
[0011]
[0012] The inventive device illustrated in
[0013] The above-described skiving cutter for producing the toothing of the circular workpiece 2 has cutting edges with a small rounding radius whereas the tool 1 in the form of a circular skiving cutter illustrated in
[0014]
[0015]
[0016] The two rotational axes 3, 4 are spaced apart by such a distance that the machining edge 8 merely comes in contact with the tooth flanks 9, but does not penetrate into the tooth flanks 9 in a cutting manner, during the relative screwing motion between the tool 1 and the circular workpiece 2. It is particularly proposed that the machining edges do not penetrate as far as into the deepest regions of the structures 10 of the tooth flanks 9, i.e. not up to the deepest surface sections of the roughing.
[0017] However, the machining edges 8 penetrate deeper into the surface el, which lies parallel to the tooth flank surface and is formed by the peaks of the structures 10, in order to smooth the peaks 10 of the rough tooth flanks 9 during the finishing process, in which their material is pressed into the adjacent valleys between the peaks 10.
[0018] In
[0019] The cutting edges of skiving cutters have a rounding radius of less than 20 micrometer whereas the rounding radius of the machining edges 8 has values greater than 20 micrometer. In preferred methods and devices, the rounding radius of the machining edges 8 amounts to at least 50 micrometer or at least 100 micrometer or at least 150 micrometer.
[0020] The preceding explanations serve for elucidating all inventions that are included in this application and respectively enhance the prior art independently with at least the following combinations of characteristics, wherein two, multiple or all of these combinations of characteristics may also be combined with one another, namely:
[0021] A method, which is characterized in that the machining edges (8) act upon the tooth flanks (9) in a smoothing manner without metal removal.
[0022] A device, which is characterized in that the control unit (20) is programmed in such a way, the rotational axes (3, 4) are spaced apart from one another in such a way and the machining teeth (7) are designed in such a way that the machining teeth (7) act upon the tooth flanks (9) in a smoothing manner without metal removal.
[0023] A method or a device, which are characterized in that the rounding radius (R) of the machining edges (8) is greater than the machining thickness or cutting depth (E).
[0024] A method or a device, which are characterized in that the workpiece (2) consists of a tempering steel or nitriding steel.
[0025] A method or a device, which are characterized in that the tensile strength of the material of the workpiece (2) amounts to no more than 1350 N/mm.sup.2.
[0026] A method or a device, which are characterized in that the workpiece (2) has an internal toothing or an external toothing, the tooth flanks (9) of which are smoothed by the machining edges (8).
[0027] A method or a device, which are characterized in that the machining teeth (7) are formed by an internal toothing or an external toothing.
[0028] A tool for carrying out the method, which is characterized in that the rounding radius R of the at least one machining edge 8 is greater than 50 micrometer.
[0029] All disclosed characteristics are essential to the invention (individually, but also in combination with one another). The disclosure of the associated/attached priority documents (copy of the priority application) is hereby fully incorporated into the disclosure content of this application, namely also for the purpose of integrating characteristics of these documents into claims of the present application. The characteristics of the dependent claims also characterize independent inventive enhancements of the prior art without the characteristics of a claim to which they refer, particularly for submitting divisional applications on the basis of these claims. The invention specified in each claim may additionally comprise one or more of the characteristics that were disclosed in the preceding description and, in particular, are identified by reference symbols and/or included in the list of reference symbols. The invention also concerns design variations, in which individual characteristics cited in the preceding description are not realized, particularly as far as they are obviously dispensable for the respective intended use or can be replaced with other, identically acting technical means.
LIST OF REFERENCE SYMBOLS
1 Tool
[0030] 2 Circular workpiece
3 Tool axis
4 Workpiece axis
5 Tooth
6 Tooth gap
[0031] 7 Machining tooth
8 Machining edge
9 Tooth flank
10 Structure
[0032] 11 Smoothed tooth flank
12 Axial feed component
13 End flank
14 Cutting face
15 Workpiece spindle
16 Driving motor
17 Tool spindle
18 Driving motor
20 Control
[0033] E Machining depth
G Smoothing depth
R Peak-to-valley height
R Rounding radius
e1 Plane
e2 Plane
e3 Plane