IP Library Granted Patent US 7,931,061
Granted Patent B2
US 7,931,061 · App. 12/334,734 · Granted Apr 26, 2011

Tire inflation system with integrated wheel seal

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Quick Facts
Patent No.
US 7,931,061
App. No.
12/334,734
Granted
Apr 26, 2011
Kind
B2
Abstract

An axle assembly includes a non-rotating component and a wheel hub supported for rotation relative to the non-rotating component about an axis. The wheel hub includes a hub air passage that has a hub inlet and a hub outlet to be fluidly connected to at least one tire. An air chamber is formed at least in part between the non-rotating component and the wheel hub. The air chamber receives air flow from an air source and directs air flow into the hub inlet. A seal assembly engages the wheel hub to seal the air chamber.

Claims (27)

1. An axle assembly comprising:

a non-rotating spindle including an outer peripheral surface;

a wheel hub supported for rotation relative to said non-rotating spindle about an axis, said wheel hub including a hub air passage having a hub inlet and a hub outlet to be fluidly connected to at least one tire;

at least one wheel bearing that rotatably supports said wheel hub for rotation relative to said non-rotating spindle;

an air chamber formed at least in part between said non-rotating spindle and said wheel hub, said air chamber to receive air flow from an air source and directing air flow into said hub inlet of said hub air passage, and wherein said wheel hub includes an inboard end that extends circumferentially around said non-rotating spindle with said air chamber being formed at said inboard end at a position that is inboard of said at least one wheel bearing, and wherein said wheel hub includes an inner peripheral surface that is spaced radially outwardly relative to said outer peripheral surface of said non-rotating spindle, and wherein at least a portion of said air chamber is formed between said inner and said outer peripheral surfaces;

a manifold that is fixed to said outer peripheral surface of said non-rotating spindle, said manifold including a first port to receive air flow from the air source and a first passage that directs air flow through said manifold to said air chamber, and wherein said air chamber is formed between an outer surface of said manifold and said inner peripheral surface of said wheel hub; and

a seal assembly engaging said wheel hub to seal said air chamber, wherein said seal assembly includes at least first and second seals that are mounted between said inner peripheral surface and said outer surface of said manifold, and which are axially spaced apart from each other along said axis to define said air chamber, and wherein said manifold includes a second passage that directs lubricating fluid to a location inboard of said first and said second seals that define said air chamber.

2. The axle assembly according to claim 1 including a third seal positioned inboard of said first and second seals to define a lubrication chamber between said third seal and one of said first and said second seals.

3. The axle assembly according to claim 1 wherein said hub inlet is positioned axially between said first and said second seals.

4. The axle assembly according to claim 1 including an axle shaft receiving driving input from a power source, said axle shaft being coupled to drive said wheel hub about said axis of rotation.

5. The axle assembly according to claim 1 including a first lubrication cavity formed between said at least one wheel bearing and said first seal and a second lubrication cavity positioned inboard of said first and second seal, said second passage connecting said first and second lubrication cavities.

6. The axle assembly according to claim 5 including a third seal positioned inboard of said second seal, said second lubrication cavity being formed between said second and said third seals.

7. An axle assembly comprising:

a non-rotating component;

a wheel hub supported for rotation relative to said non-rotating component about an axis, said wheel hub including a hub air passage having a hub inlet and a hub outlet to be fluidly connected to at least one tire;

an air chamber formed at least in part between said non-rotating component and said wheel hub, said air chamber to receive air flow from an air source and directing air flow into said hub inlet of said hub air passage;

a manifold that is fixed to an outer peripheral surface of said non-rotating component, said manifold including a first port to receive air flow from the air source and a first passage that directs air flow from said first port and through said manifold to said air chamber;

a seal assembly engaging said wheel hub and said manifold to seal said air chamber; and

a first lubrication cavity positioned outboard of said seal assembly and a second lubrication cavity positioned inboard of said seal assembly chamber, wherein said manifold includes a second passage that fluidly connects said first and second lubrication cavities.

8. The axle assembly according to claim 7 wherein said non-rotating component comprises a spindle.

9. The axle assembly according to claim 7 wherein said seal assembly includes first and second seals that are axially spaced apart from each other to define said air chamber, said first and second seals directly engaging an outer surface of said manifold and an inner surface of said wheel hub.

10. The axle assembly according to claim 9 wherein said manifold includes a second port that is positioned between said first and second seals, said second port directing air from said first passage into said air chamber.

11. The axle assembly according to claim 9 including at least one wheel bearing that rotatably supports said wheel hub on said non-rotating component for rotation about said axis, and wherein said air chamber is positioned inboard of said at least one wheel bearing.

12. The axle assembly according to claim 11 wherein said second passage extends from said first lubrication cavity, which is formed between said at least one bearing and said first seal, to said second lubrication cavity that is positioned inboard of said second seal.

13. The axle assembly according to claim 12 including a third seal positioned inboard of said second seal such that said second lubrication cavity is formed between said second and said third seals.

14. The axle assembly according to claim 13 wherein said third seal directly engages said outer surface of said manifold and said inner surface of said wheel hub.

15. The axle assembly according to claim 9 wherein said hub inlet is positioned axially between said first and said second seals.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Aug 4, 2022
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: ARVINMERITOR, INC.; MERITOR TRANSMISSION CORPORATION; ARVIN TECHNOLOGIES, INC.; GABRIEL RIDE CONTROL PRODUCTS, INC.; EUCLID INDUSTRIES, LLC; MAREMOUNT CORPORATION; ARVINMERITOR TECHNOLOGY, LLC; MERITOR HEAVY VEHICLE SYSTEMS, LLC; ARVINMERITOR OE, LLC; MOTOR HEAVY VEHICLE SYSTEMS, LLC; MERITOR TECHNOLOGY, LLC; AXLETECH INTERNATIONAL IP HOLDINGS, LLC
Reel/Frame 061521/0550 →
SECURITY AGREEMENT Recorded Apr 25, 2012
From: ARVINMERITOR TECHNOLOGY, LLC
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 028106/0360 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2008
From: GONSKA, DAVID; JENKINSON, SCOTT; WANG, YENKAI; TERTZAKIAN, JEREMY; MILLER, STEVEN R.; DECAIRE, RICHARD; AUSTIN, NORMAN D.; ELLIS, TRACY G.; WITTRY, CHRISTOPHER J.; MORGAN, JOHN D.
To: ARVINMERITOR TECHNOLOGY, LLC
Reel/Frame 021978/0742 →