US2004010914A1PendingUtilityA1
Method for providing assemblies with gearings and profiles
Priority: Sep 25, 2000Filed: Sep 25, 2001Published: Jan 22, 2004
Est. expirySep 25, 2020(expired)· nominal 20-yr term from priority
B23P 15/14F16H 55/02B23P 13/02B21H 5/005B21H 5/00B23F 17/00Y10T29/49476
10
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Claims
Abstract
A method is proposed for forming a toothing ( 7 ) and/or a profile ( 5 ) onto a shaft ( 3 ). This is distinguished by the following step: forming the toothing ( 7 ) and/or the profile ( 5 ) onto the shaft ( 3 ) mounted in a unit ( 1 ).
Claims
exact text as granted — not AI-modified1 . Method for forming a toothing ( 7 ) and/or a profile ( 5 ) on shaft ( 3 ), wherein the step is:
forming the toothing ( 7 ) and/or the profile ( 5 ) on the shaft ( 3 ) mounted in a unit ( 1 ).
2 . Method according to claim 1 , wherein the unit ( 1 ) and/or the shaft ( 3 ) is/are fixed before the forming.
3 . Method according to claim 1 or 2 , wherein the fixation is released after the forming.
4 . Method according to one of the foregoing claims, wherein the forming takes place by deformation and/or by electrochemical processing and/or by cutting methods.
5 . Method according to one of the foregoing claims, wherein the toothing ( 7 ) is formed on with a skew toothing, in particular a skew toothing with a large toothing angle.
6 . Method according to one of the foregoing claims, wherein the forming takes place by stamping.
7 . Method according to one of the foregoing claims, wherein the forming takes place by pressing.
8 . Method according to one of the foregoing claims, wherein the forming takes place by rolling.
9 . Method according to one of the foregoing claims, wherein the forming takes place by grinding.
10 . Method according to one of the foregoing claims, wherein the forming takes place by flat grinding.
11 . Method according to one of the foregoing claims, wherein the forming takes place by milling.
12 . Method according to one of the foregoing claims, wherein the forming takes place by flat milling.
13 . Method according to one of the foregoing claims, wherein the forming takes place by lasering.
14 . Method according to one of the foregoing claims, wherein the forming takes place by gear shaping.
15 . Method according to one of the foregoing claims, wherein the forming takes place by hob peeling.
16 . Method according to one of the foregoing claims, wherein the forming takes place by roll honing.
17 . Method according to one of the foregoing claims, wherein the forming takes place by gear generating by planing.
18 . Method according to one of the foregoing claims, wherein the forming takes place by gear hobbing.
19 . Method according to one of the foregoing claims, wherein the forming takes place by bevel gear cutting.
20 . Method according to one of the foregoing claims, wherein the forming takes place by roll grinding.
21 . Method according to one of the foregoing claims, wherein the forming takes place by profile slotting.
22 . Method according to one of the foregoing claims, wherein the forming takes place by profile grinding.
23 . Method according to one of the foregoing claims, wherein the forming takes place by eccentric grinding.
24 . Method according to one of the foregoing claims, wherein the forming takes place by end-milling.
25 . Method according to one of the foregoing claims, wherein the forming takes place by high speed milling.
26 . Method according to one of the foregoing claims, wherein the forming takes place by rasping.
27 . Method according to one of the foregoing claims, wherein the forming takes place by broaching.
28 . Method according to one of the foregoing claims, wherein the forming takes place by water jet cutting.
29 . Method according to one of the foregoing claims, wherein the forming takes place by water jet milling.
30 . Method according to one of the foregoing claims, wherein the forming takes place by slide drawing.
31 . Method according to one of the foregoing claims, wherein the forming takes place by die forming.
32 . Method according to one of the foregoing claims, wherein the forming takes place by longitudinal rolling with press rollers.
33 . Method according to one of the foregoing claims, wherein the forming takes place by transverse rolling with press rollers.
34 . Method according to one of the foregoing claims, wherein the forming takes place by transverse rolling with rolling rods.
35 . Method according to one of the foregoing claims, wherein the forming takes place by transverse rolling with outer rollers/end wheels.
36 . Method according to one of the foregoing claims, wherein the forming takes place by transverse rolling with inner-toothed front jaws.
37 . Method according to one of the foregoing claims, wherein the forming takes place by thread rolling.
38 . Method according to one of the foregoing claims, wherein the forming takes place by thread rolling.
39 . Method according to one of the foregoing claims, wherein the forming takes place by roller jaw rolling.
40 . Method according to one of the foregoing claims, wherein the forming takes place by electro-erosion.
41 . Method according to one of the foregoing claims, wherein the forming takes place by electrochemical erosion pressing.
42 . Method according to one of the foregoing claims, wherein the forming takes place by electrochemical erosion.
43 . Method according to one of the foregoing claims, wherein the forming takes place by electrochemical removal.
44 . Method according to one of the foregoing claims, wherein the forming takes place by chemical removal.
45 . Method according to one of the foregoing claims, wherein the forming takes place by precise electrochemical machining (PEM).
46 . Method according to one of the foregoing claims, wherein the forming takes place by etching.
47 . Method according to one of the foregoing claims, wherein the forming takes place by laser beam removal.
48 . Method according to one of the foregoing claims, wherein the forming takes place by laser beam cutting.
49 . Method according to one of the foregoing claims, wherein the forming takes place by vortex methods.
50 . Method according to one of the foregoing claims, wherein the forming takes place by torsional broaching.
51 . Method according to one of the foregoing claims, wherein the forming takes place by rotary swaging.
52 . Method according to one of the foregoing claims, wherein the shaft ( 3 ) is locked before forming, and is released again after forming.
53 . Method according to one of the foregoing claims, wherein the unit ( 1 ) is a commercial electric motor and/or gearbox, particularly components manufactured in mass production.
54 . Unit, particularly electric motor or gearbox, wherein it has a shaft which has a profile ( 5 ) or a toothing ( 7 ), which are applied in the mounted state, particularly by a method according to one of claims 1-50.Join the waitlist — get patent alerts
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