Gear part and method for forming a gear part
Abstract
A gear part and method is provided for forming a gear part, in which a circular blank-like workpiece is fixed in a flow-forming machine in a radially inner area, the circular blank-like workpiece is rotated, at least one roller is infed and the roller is substantially radially moved inwardly, in which during the radial moving in workplace material flows radially, so that the workplace wall thickness is reduced in this area, in a central area of the workplace a boss is formed and during radial moving in the roller is increasingly axially infed. The method also relates to forming a gear part in which the circular blank edge is thickened by at least one forming roller, the shaping of the circular blank edge taking place through the contour of gripping jaws and/or the forming roller and the cross-section of the circular blank edge in formed in an approximately rectangular manner.
Claims
exact text as granted — not AI-modified1 . A method for forming a gear part, which comprises:
fixing a workpiece with a radially directed area in a flow-forming machine; rotating the workpiece; substantially radially infeeding at least one roller for modifying a wall thickness of the workpiece, the roller being radially moved inwardly along the radially directed area of the workpiece wherein material of the workpiece being radially displaced such that the wall thickness of the workpiece is reduced in said radially directed area; and axially adjusting the roller during radial inward movement of the roller for modifying the wall thickness of the workpiece.
2 . Method according to claim 1 , which comprises radially inwardly reducing the wall thickness in a radially inner area of the workpiece.
3 . Method according to claim 1 , which comprises displacing upon radially moving in of the roller, the material at the workpiece and for forming a boss in a central area of the workpiece.
4 . Method according to claim 3 , which comprises shaping the boss due to the shape of one of the roller and/or a countertool.
5 . Method according to claim 3 , which comprises one of cutting off the boss and/or punching the boss by contact with the roller.
6 . Method for forming a gear part, which comprises:
fixing a workpiece with a radially directed area in a flow-forming machine; rotating the workpiece; substantially radially infeeding at least one roller for modifying a wall thickness of the workpiece; initially upsetting a radially outer edge of the workpiece and cross-sectionally thickening said outer edge so as to be tear-shaped; and subsequently upsetting the tear-shaped thickened edge and working said tear-shaped edge into one of a substantially rectangular cross-section and a rectangular cross-section having a square marginal area.
7 . Method according to claim 6 , wherein the tear-shaped thickened marginal area is thickened so as to form one of an approximately circular cross-section and an oval-shaped cross-section, with a predetermined axial width and the tear-shaped thickened edge is radially slightly upset while substantially maintaining the axial width, and which comprises shaping and work hardening the corner regions of the marginal area.
8 . Method according to claim 6 , wherein upon substantially rectangular forming of the marginal area, a forming roller engages the workpiece and which comprise two radially projecting, shaping side walls for forming bevels in the workpiece.
9 . Method according to claim 8 , wherein, with respect to the radial direction, the side walls have an included angle between 1.5 and 6°, preferably approximately 3°.
10 . Method according to claim 8 , wherein the at least one forming roller is infed in an axially displaced manner with respect to a radial plane of centers of the workpiece.
11 . Method according to claim 8 , which comprises cutting off the forming bevels which resulting from forming.
12 . Method according to claim 6 , which comprises forming an external tooth system in the marginal area.
13 . Method according to claim 12 , which comprises forming the external tooth system by flow-forming by use of at least one gear cutting roller or by use of cross-rolling with at least one cross-rolling ledge.
14 . Method according to claim 12 , which comprises using various machines to form the external tooth system.
15 . Method according to claim 12 , which comprises axially arranging a plurality of workpieces in a row, the thickened marginal area thereof engaging one another and being mutually supported and jointly provides the workpieces with an external tooth system.
16 . A gear part which comprises a substantially rotationally symmetrical shape part having a radially directed area, the part being a thickened marginal area for receiving a profile, particularly a tooth system, wherein:
the thickened marginal area has a cross-section with a substantially rectangular shape; and the radially directed area is tapered inwardly in a radial direction.
17 . Gear part according to claim 16 , wherein the part comprises a boss located in a central area thereto.
18 . Gear part according to claim 16 , wherein the marginal area comprises a toothed system.Join the waitlist — get patent alerts
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