IP Library Granted Patent US 11,318,569
Granted Patent B2
US 11,318,569 · App. 17/166,149 · Granted May 3, 2022

Net forged spiral bevel gear

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Quick Facts
Patent No.
US 11,318,569
App. No.
17/166,149
Filed
Feb 3, 2021
Granted
May 3, 2022
Kind
B2
Art Unit
3726
USPC
29/893.34
Abstract

A process for forming a finished spiral bevel gear includes forging a blank to form a forging having near net-shaped spiral bevel teeth, machining the forging, coining the forging to form a coined spiral bevel gear with net-shaped spiral bevel gear teeth; heat treating the coined spiral bevel and finishing the heat treated, coined spiral bevel gear without machining the net-shaped spiral bevel gear teeth in a machining operation that forms chips.

Claims (20)

1. A process for providing a spiral bevel gear and a spiral bevel pinion gear, the process comprising:

providing a blank, the blank having a blank temperature;

heating the blank such that the blank temperature exceeds a predetermined temperature threshold;

forging the heated blank while the blank temperature exceeds the predetermined temperature threshold to produce a forging, the forging having a first side and a second side, the first side comprising a plurality of near net-shaped spiral bevel gear teeth, the forging being formed of metal;

machining the second side of the forging to a predetermined distance from a portion of the near net-shaped spiral bevel gear teeth to form a machined forging;

without machining the near net-shaped spiral bevel gear teeth, forming a coined gear by cold working the machined forging in a coining die to induce plastic flow in the near net-shaped spiral bevel gear teeth and form net-shaped spiral bevel gear teeth that conform to a desired tooth profile with a desired degree of accuracy, wherein each of the net-shaped spiral bevel gear teeth has a pair of flanks, and wherein the desired tooth profile includes a contour of the flanks of the net-shaped spiral bevel gear teeth, wherein the coining die contacts each of the net-shaped spiral bevel gear teeth over an entirety of the desired tooth profile of each of the net-shaped spiral bevel gear teeth;

heat-treating the coined gear to form a heat-treated gear;

providing a spiral bevel pinion gear; and

finishing the heat-treated gear without milling, grinding or electro-discharge machining the net-shaped spiral bevel gear teeth to produce a finished spiral bevel gear;

wherein the teeth of the finished spiral bevel gear have a quality level in which the finished gear and the spiral bevel pinion gear, when meshed together, perform at or below a 50 micro-radian level of first harmonic transmission error when positioned in a predetermined spatial relationship.

2. The process of claim 1 , wherein prior to forming the coined gear by cold working the machined forging in a coining die, the process comprises forming a plurality of bolt holes in the forging.

3. The process of claim 2 , wherein the bolt holes are at least partly threaded.

4. The process of claim 1 , wherein the near net-shaped spiral bevel gear teeth of the forging are used to locate the forging when the second side of the forging is machined.

5. The process of claim 4 , wherein a locator engages the near net-shaped spiral bevel gear teeth when the forging is located to machine the second side of the forging, and wherein the locator has a plurality of locating elements that are driven into contact with the near net-shaped spiral bevel gear teeth, each of the locators being disposed between a coast side of a first one of an associated adjacent pair of the near net-shaped spiral bevel gear teeth and a drive side of a second one of the associated adjacent pair of the near net-shaped spiral bevel gear teeth.

6. The process of claim 1 , wherein the finished spiral bevel gear is a hypoid gear.

7. The process of claim 1 , wherein the teeth of the finished spiral bevel gear conform to AGMA 2009-B01 and 2011-A98 B8.

8. The process of claim 1 , wherein finishing the heat-treated gear comprises machining a portion of the heat-treated gear other than the flanks of the spiral bevel gear teeth to form a heat-treated, machined gear.

9. The process of claim 8 , wherein the portion of the heat-treated gear that is machined includes a central through-bore.

10. The process of claim 8 , wherein the portion of the heat-treated gear that is machined includes the second side.

11. The process of claim 8 , wherein finishing the heat-treated gear further comprises lapping the spiral bevel gear teeth on the heat-treated, machined gear with spiral bevel pinion gear teeth.