Rack shaft and method for producing same
US-2018221938-A1 · Aug 9, 2018 · US
US11021184B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11021184-B2 |
| Application number | US-201816160139-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 15, 2018 |
| Priority date | Jan 22, 2014 |
| Publication date | Jun 1, 2021 |
| Grant date | Jun 1, 2021 |
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A steering rack (11a) meshes with a pinion rotatably driven by the input shaft (6) of a steering gear (5) constituting an automotive steering device. The steering rack (11a) is provided with a an axially extending rod part (15) of round cross section, and a plurality of rack teeth (16) formed on a radial one side surface of an axial portion of the rod part (15), the rack teeth (16) meshing with the pinion. At least one dummy tooth (42) is formed in portions that are axial parts of the rod part (15) and are adjacent to both axial sides of the plurality of rack teeth (16). The dummy tooth (42) has a tooth height less than the rack teeth (16) and does not mesh with the pinion.
Opening claim text (preview).
The invention claimed is: 1. A method of manufacturing a steering rack, the method comprising: forming a plurality of rack teeth on a radial one side surface of a part of a rod part, which is extending in an axial direction and is made of a metal material, in the axial direction by pressing a tooth- forming punch having rack tooth processing concave and convex, the tooth-forming punch having a rack shape toward the radial one side surface, and plastically deforming the radial one side surface of the part of the rod part, wherein the plurality of rack is configured to mesh with a pinion configured to be rotationally driven by an input shaft of a steering gear configuring an automotive steering device, the tooth-forming punch having dummy tooth processing concave and convex of which a tooth height is less than the rack tooth processing concave and convex at parts adjacent to both axial sides of the rack tooth processing concave and convex, at least one dummy tooth having a tooth height less than the rack teeth and configured not to mesh with the pinion is formed at parts that are parts of the rod part in the axial direction and are adjacent to both axial sides of the plurality of rack teeth, in the process of forming the rack teeth, axially outer surfaces of teeth positioned at end parts of the tooth-forming punch in the axial direction are contacted to axially inner surfaces of the rod part, the dummy tooth processing concave and convex has at least one protrusion, and a radially outer surface of the at least one dummy tooth is formed with at least one groove portion on the at least one protrusion, the groove portion being one of a groove portion extending transversely to a width of the tooth-forming punch and a substantially semispherical groove portion with a diameter and a depth into the at least one protrusion.
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