IP Library Granted Patent US 10,207,582
Granted Patent B2
US 10,207,582 · App. 15/639,060 · Granted Feb 19, 2019

Differential assembly with clutch

Inventor: Brian Lee (York, SC)
Assignee: Shaeffler Technologies AG & Co. KG
B60K17/3462B60K17/18B60K23/0808F16H48/08F16H57/037
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Quick Facts
Patent No.
US 10,207,582
App. No.
15/639,060
Granted
Feb 19, 2019
Kind
B2
Abstract

A differential assembly includes a side gear configured to receive torque and a wedge clutch. The wedge clutch includes a hub configured to connect with a shaft and a wedge element radially disposed between the hub and the side gear. The wedge element has an inner surface seated on the hub and an outer surface engageable with the side gear. The wedge element is radially expandable and has a rested state in which the side gear and the hub are rotatable relative to each other and an expanded state in which the side gear and hub are rotationally locked to each other.

Claims (37)

1. A differential assembly comprising:

a carrier supporting a pair of opposing first and second side gears and a pair of opposing spider gears meshing between the first and second sides gears, wherein the first side gear includes an inner surface defining a plurality of circular grooves; and

a wedge clutch disposed in the carrier and including:

a hub defining an inner surface configured to receive a shaft and an outer surface, and

a wedge element radially disposed between the hub and the first side gear and having an inner surface seated on the hub and an outer surface defining a plurality of raised rings received in the grooves, wherein the wedge element is configured to radially expand to lock the hub with the first side gear when the clutch is engaged.

2. The differential assembly of claim 1 , wherein the outer surface of the hub is tapered.

3. The differential assembly of claim 1 , wherein the hub is axially movable relative to the wedge element and the wedge clutch is engaged in response to the hub being moved towards the wedge element and is disengaged in response to the hub being moved away from the wedge element.

4. The differential assembly of claim 1 , wherein the outer surface of the hub defines a first cammed profile, and the inner surface of the wedge element defines a second cammed profile configured to cooperate with the first cammed profile to radially expand the wedge element in response to relative rotation between the hub and the wedge element.

5. The differential assembly of claim 1 further comprising an actuator configured to move the hub towards and away from the wedge element.

6. The differential assembly of claim 1 , wherein the hub has an outer-end portion defining a circular groove and a tapered portion that defines the outer surface.

7. The differential assembly of claim 6 further comprising:

a fork received in the circular groove of the outer-end portion; and

an actuator connected to the fork and operable to move the fork to slide the hub towards or away from the wedge element.

8. A differential assembly comprising:

a side gear configured to receive torque; and

a wedge clutch including:

a hub configured to connect with a shaft, and

a wedge element radially disposed between the hub and the side gear and having an inner surface seated on the hub and an outer surface engageable with the side gear, wherein the wedge element is radially expandable and includes a rested state in which the side gear and the hub are rotatable relative to each other and an expanded state in which the side gear and hub are rotationally locked to each other.

9. The differential assembly of claim 8 , wherein the hub defines radially extending ramps, and the inner surface of the wedge element defines lobes configured to nest with the ramps and peaks located between the lobes, wherein the ramps and the peaks cooperate to radially expand the wedge element to the expanded state in response to relative rotation between the hub and the wedge element.

10. The differential assembly of claim 9 , wherein the hub has a tapered portion that defines the radially extending ramps.

11. The differential assembly of claim 10 , wherein the hub is axially movable relative to the wedge element and the wedge clutch is engaged in response to the hub being axially moved toward the wedge element and is disengaged in response to the hub being moved away from the wedge element.

12. The differential assembly of claim 11 , further comprising an actuator configured to axially move the hub.

13. The differential assembly of claim 8 , wherein the side gear defines a circular groove and the wedge element defines a raised ring disposed in the groove.

14. The differential assembly of claim 13 , wherein the circular groove has a first pair of slanted surfaces, and the raised ring has a second pair of slanted surfaces each configured to frictionally engage with one of the first pair of slanted surfaces to lock the side gear and the wedge element when the wedge element is in the expanded state.

15. The differential assembly of claim 14 , wherein the side gear defines a plurality of circular grooves and the wedge element defines a plurality of raised rings each disposed in one of the grooves.

16. The differential assembly of claim 8 , wherein the wedge element is substantially cylindrical in shape and defines a slit extending axially through the wedge element.

17. A differential assembly comprising:

a carrier configured to receive torque;

a side gear supported by the carrier; and

a wedge clutch including:

an axially movable hub configured to connect with a shaft and having a tapered portion defining a first cammed profile, and

a wedge element radially disposed between the hub and the side gear and having an inner surface seated on the tapered portion and defining a second cammed profile that cooperates with the first cammed profile to radially expand wedge element in response to relative rotation between the hub and the wedge element, and further having an outer surface engageable with the side gear; wherein

the wedge clutch includes an engaged state in which the wedge element is expanded to lock the side gear and the hub due to cooperation of the first and second cammed profiles and a disengaged state in which the wedge element is in a rested position to allow relative rotation between the side gear and the hub, and

the wedge clutch is switched between the engage and disengaged states by axially moving hub towards and away from the wedge element.

18. The differential assembly of claim 17 , wherein the side gear includes an inner surface defining a plurality of axially spaced circular grooves, and the wedge element defines a plurality of axially spaced raised rings each disposed in one of the grooves.

19. The differential assembly of claim 17 further comprising an actuator configured to axially move the hub towards and away from the wedge element to engage and disengage the wedge clutch.

20. The differential assembly of claim 17 , wherein the wedge element is substantially cylindrical in shape and defines a slit extending axially through the wedge element.

Assignments (2)
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (063804/0702) Recorded Jun 2, 2026
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: TELEPHONICS CORPORATION; TTM TECHNOLOGIES, INC.; TTM TECHNOLOGIES NORTH AMERICA, LLC
Reel/Frame 075679/0852 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2017
From: LEE, BRIAN
To: SCHAEFFLER TECHNOLOGIES AG & CO. KG
Reel/Frame 042931/0032 →
Continuity (1)
Related Publication 20190001816A1 · Jan 3, 2019