IP Library Granted Patent US 8,197,349
Granted Patent B2
US 8,197,349 · App. 12/716,073 · Granted Jun 12, 2012

Shock absorbing propeller shaft apparatus for motor vehicle

Assignee: Showa Corporation
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Quick Facts
Patent No.
US 8,197,349
App. No.
12/716,073
Granted
Jun 12, 2012
Kind
B2
Abstract

In a shock absorbing propeller shaft apparatus for a motor vehicle, a stop ring is fitted to an annular groove provided in an outer periphery of an inner shaft end close to a base end with respect to a portion to which an inner race of a constant velocity joint in the inner shaft end is fitted, a collar main body of a collar is inserted to an outer periphery between a portion to which the inner race of the constant velocity joint in the inner shaft end is fitted and a portion to which the stop ring is fitted, in the outer periphery of the inner shaft end, and a flange portion protruding out in an axial direction from an outer diameter side of one end of the collar main body is attached to cover an outer periphery of the stop ring.

Claims (22)

1. A shock absorbing propeller shaft apparatus for a motor vehicle, comprising:

first and second propeller shafts being coupled by a constant velocity joint;

an inner shaft end provided in the first propeller shaft; and

a tubular outer shaft end provided in the second propeller shaft,

the inner shaft end of the first propeller shaft being fitted to the tubular outer shaft end of the second propeller shaft via the constant velocity joint, wherein a shaft spline provided in the inner shaft end in the first propeller shaft is fitted to a hole spline provided in an inner race of the constant velocity joint,

a stop ring is fitted to an annular groove provided in an outer periphery of the inner shaft end close to a base end with respect to a portion to which the inner race of the constant velocity joint in the inner shaft end is fitted,

a collar main body of a collar is inserted to an outer periphery of the inner shaft end between the portion to which the inner race of the constant velocity joint in the inner shaft end is fitted and a portion to which the stop ring is fitted,

and a flange portion protruding out in an axial direction from an outer diameter side in one end of the collar main body is attached to cover an outer periphery of the stop ring,

a stop ring is attached to an annular groove provided in an outer periphery of the inner shaft end close to a leading end with respect to the portion to which the inner race of the constant velocity joint in the inner shaft end is fitted,

the inner race of the constant velocity joint is held and fixed from both sides in the axial direction between the other end of the collar main body of the collar and the stop ring; and

a groove side surface of the annular groove which is provided in the outer periphery close to the base end of the inner shaft end and to which the stop ring is fitted, the groove side surface being positioned on an opposed side to the inner race of the constant velocity joint with respect to the stop ring is formed as an inclined surface having an acute angle with respect to a center axis extending toward a base end side from a leading end side of the inner shaft end.

2. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 1 , wherein the annular groove, which is provided in the outer periphery close to the base end of the inner shaft end and to which the stop ring is fitted, is provided in an outer periphery of the shaft spline provided in the inner shaft end.

3. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 2 , wherein a groove side surface of the annular groove which is provided in the outer periphery close to the base end of the inner shaft end and to which the stop ring is fitted, the groove side surface being positioned on an opposed side to the inner race of the constant velocity joint with respect to the stop ring is formed as an inclined surface having an acute angle with respect to a center axis extending toward a base end side from a leading end side of the inner shaft end.

4. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 3 , wherein a cap press-fit portion is formed in the tubular outer shaft end of the second propeller shaft, and a leading end of the inner shaft end is capable of breaking the cap press-fit portion when the first and second propeller shafts are exposed to a shock force, the inner shaft end pushes the tubular outer shaft end, and the stop ring fitted to the annular groove provided in the outer periphery close to the base end of the inner shaft end pushes open a flange portion of the collar so as to be disconnected from the annular groove.

5. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 3 , wherein the flange portion is provided with the same outer diameter as an outer diameter of the collar main body and a larger inner diameter than an inner diameter of the collar main body.

6. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 5 , wherein the flange portion is formed as an annular shape which is continuous in a circumferential direction of the collar main body.

7. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 2 , wherein a cap press-fit portion is formed in the tubular outer shaft end of the second propeller shaft, and a leading end of the inner shaft end is capable of breaking the cap press-fit portion when the first and second propeller shafts are exposed to a shock force, the inner shaft end pushes the tubular outer shaft end, and the stop ring fitted to the annular groove provided in the outer periphery close to the base end of the inner shaft end pushes open a flange portion of the collar so as to be disconnected from the annular groove.

8. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 2 , wherein the flange portion is provided with the same outer diameter as an outer diameter of the collar main body and a larger inner diameter than an inner diameter of the collar main body.

9. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 8 , wherein the flange portion is formed as an annular shape which is continuous in a circumferential direction of the collar main body.

10. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 1 , wherein a cap press-fit portion is formed in the tubular outer shaft end of the second propeller shaft, and a leading end of the inner shaft end is capable of breaking the cap press-fit portion when the first and second propeller shafts are exposed to a shock force, the inner shaft end pushes the tubular outer shaft end, and the stop ring fitted to the annular groove provided in the outer periphery close to the base end of the inner shaft end pushes open a flange portion of the collar so as to be disconnected from the annular groove.

11. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 1 , wherein the flange portion is provided with the same outer diameter as an outer diameter of the collar main body and a larger inner diameter than an inner diameter of the collar main body.

12. The shock absorbing propeller shaft apparatus for a motor vehicle according to claim 11 , wherein the flange portion is formed as an annular shape which is continuous in a circumferential direction of the collar main body.

Assignments (2)
MERGER Recorded Feb 2, 2022
From: SHOWA CORPORATION
To: HITACHI ASTEMO, LTD.
Reel/Frame 059682/0321 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2010
From: TERADA, EIICHI; OSAWA, RYOHEI
To: SHOWA CORPORATION
Reel/Frame 024017/0116 →
Priority Claims (1)
JP 2009-225371 · Sep 29, 2009 · national
Continuity (1)
Related Publication 20110077091A1 · Mar 31, 2011