IP Library Granted Patent US 8,251,828
Granted Patent B2
US 8,251,828 · App. 12/732,243 · Granted Aug 28, 2012

Constant velocity joint

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Quick Facts
Patent No.
US 8,251,828
App. No.
12/732,243
Granted
Aug 28, 2012
Kind
B2
Abstract

A constant velocity joint is disclosed that includes a first rotatable shaft comprising an axle portion having on one end an enlarged pocket end, the pocket end having a plurality of circumferentially and radially spaced ball pockets; a corresponding plurality of spherical balls disposed in the pockets; and a second rotatable shaft comprising a joint housing, the joint housing having a central bore with a corresponding plurality of axially extending, circumferentially and radially spaced ball grooves disposed about the second longitudinal axis and a base, the joint housing disposed over the pocket end with the corresponding plurality of balls disposed in the grooves, the joint providing a range of angular and axial movement of the first shaft relative to the second shaft, each of the plurality of ball pockets comprising a portion of the pocket having a conformity ratio C greater than about 1.04.

Claims (26)

1. A constant velocity joint, comprising:

a first rotatable shaft having a first longitudinal axis, the first shaft comprising an axle portion having on one end thereof an enlarged pocket end, the pocket end having a plurality of circumferentially and radially spaced ball pockets formed therein;

a corresponding plurality of spherical balls disposed in the ball pockets; and

a second rotatable shaft having a second longitudinal axis and comprising a joint housing disposed on an end thereof, the joint housing having a central bore with a corresponding plurality of axially extending, circumferentially and radially spaced ball grooves disposed therein about the second longitudinal axis, the joint housing disposed over the pocket end with the corresponding plurality of balls disposed in the ball grooves, thereby forming a joint that is configured to provide a range of angular movement and a range of axial movement of the first shaft relative to the second shaft, each of the plurality of ball pockets comprising a portion of the pocket having a conformity ratio C greater than about 1.04.

2. The constant velocity joint of claim 1 , wherein the portion of the pocket having a conformity ratio greater than about 1.04 comprises a peripheral portion disposed about a central axis of the pocket.

3. The constant velocity joint of claim 2 , wherein the peripheral portion comprises a planar surface.

4. The constant velocity joint of claim 1 , wherein the portion of the pocket having a conformity ratio greater than about 1.04 comprises an axial portion.

5. The constant velocity joint of claim 4 , wherein the axial portion comprises a planar surface.

6. The constant velocity joint of claim 1 , wherein the portion of the pocket having a conformity ratio greater than about 1.04 comprises a transverse portion.

7. The constant velocity joint of claim 6 , wherein the transverse portion comprises a planar surface.

8. The constant velocity joint of claim 1 , wherein the portion of the pocket having a conformity ratio greater than about 1.04 comprises a peripheral portion disposed about a central axis of the pocket, an axial portion or a transverse portion, or a combination thereof.

9. The constant velocity joint of claim 1 , wherein the plurality of ball pockets comprises three or more ball pockets.

10. The constant velocity joint of claim 1 , wherein the plurality of ball pockets have a shape that comprises an outwardly convexly curved upper portion and a frustoconical lower portion, a truncated ellipsoid or a truncated rounded rectangular box.

11. A constant velocity joint, comprising:

a first rotatable shaft having a first longitudinal axis, the first shaft comprising an axle portion having on one end thereof an enlarged pocket end, the pocket end having a plurality of circumferentially and radially spaced ball pockets formed therein;

a corresponding plurality of spherical balls disposed in the ball pockets; and

a second rotatable shaft having a second longitudinal axis and comprising a joint housing disposed on an end thereof, the joint housing having a central bore with a corresponding plurality of axially extending, circumferentially and radially spaced ball grooves disposed therein about the second longitudinal axis, the joint housing disposed over the pocket end with the corresponding plurality of balls disposed in the ball grooves, thereby forming a joint that is configured to provide a range of angular movement and a range of axial movement of the first shaft relative to the second shaft, each of the plurality of ball pockets comprising a portion of the pocket having an axial conformity ratio C a and a transverse conformity ratio C t , and wherein at least one of C a or C t is greater than about 1.04.

12. The constant velocity joint of claim 11 , wherein the portion having at least one of C a or C t is greater than about 1.04 comprises a peripheral portion disposed about a central axis of the pocket.

13. The constant velocity joint of claim 12 , wherein the peripheral portion comprises a planar surface.

14. The constant velocity joint of claim 11 , wherein the portion having at least one of C a or C t greater than about 1.04 comprises an axial portion.

15. The constant velocity joint of claim 14 , wherein the axial portion comprises a planar surface.

16. The constant velocity joint of claim 11 , wherein the portion having at least one of C a or C t greater than about 1.04 comprises a transverse portion.

17. The constant velocity joint of claim 16 , wherein the transverse portion comprises a planar surface.

18. The constant velocity joint of claim 11 , wherein the portion having at least one of C a or C t greater than about 1.04 comprises a peripheral portion disposed about a central axis of the pocket, an axial portion or a transverse portion, or a combination thereof.

19. The constant velocity joint of claim 11 , wherein the plurality of ball pockets comprises three or more ball pockets.

20. The constant velocity joint of claim 11 , wherein the plurality of ball pockets have a shape that comprises an outwardly convexly curved upper portion and a frustoconical lower portion, a truncated ellipsoid or a truncated rounded rectangular box.