IP Library Granted Patent US 7,090,208
Granted Patent B1
US 7,090,208 · App. 11/043,728 · Granted Aug 15, 2006

Rubber bushing

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Quick Facts
Patent No.
US 7,090,208
App. No.
11/043,728
Granted
Aug 15, 2006
Kind
B1
Abstract

A bushing assembly for a vehicle suspension system includes first and second bushing components that are fixed to a central pin. The pin is supported on a suspension component and includes pin ends that are mounted to an axle housing component. A washer is supported on the pin between the first and second bushings and abuts against inboard edges of the first and second bushings. An outer retaining tube surrounds the first and second bushings and the washer. The outer retaining tube includes opposing deformed end portions that directly engage outboard edges of the first and second bushings to form axial load carrying surfaces for the first and said second bushings.

Claims (25)

1. A bushing assembly comprising:

a first cylindrical bushing including a first inner cylindrical sleeve and a first resilient cylindrical sleeve surrounding an outer circumference of said first inner cylindrical sleeve;

a second cylindrical bushing axially spaced from said first cylindrical bushing and including a second inner cylindrical sleeve and a second resilient cylindrical sleeve surrounding an outer circumference of said second inner cylindrical sleeve;

a washer positioned intermediate said first and said second cylindrical bushings and wherein said first and said second cylindrical bushings each include inboard edges facing each other and outboard edges facing away from each other with said washer being in direct engagement with said inboard edges; and

an outer retaining tube substantially surrounding said first cylindrical bushing, said second cylindrical bushing, and said washer wherein an inner surface of said outer retaining tube is radially spaced from an outer circumferential edge of said washer to define an annular space and wherein said outer retaining tube directly engages an outer circumferential surface of said first and said second resilient cylindrical sleeves, and wherein said outer retaining tube includes opposing end portions engaging said outboard edges of said first and second cylindrical bushings where said opposing end portions are crimped to form transversely extending lips that define axial load carrying surfaces.

2. The bushing assembly according to claim 1 wherein each of said first and said second inner cylindrical sleeves has an inner surface that engages a pin and an outer surface that engages a respective one of said first and said second resilient cylindrical sleeves, said outer surface being defined by a generally constant diameter extending along a length of said first and said second inner cylindrical sleeves.

3. The bushing assembly according to claim 1 including a pin having a central body portion, and first and second pin ends each including structure for attachment to a suspension component, wherein said first and said second cylindrical bushings are mounted on said central body portion with said first and second pin ends extending outwardly of opposing ends of said outer retaining tube.

4. The bushing assembly according to claim 1 wherein each of said first and said second inner cylindrical sleeves is comprised of a single inner cylindrical sleeve and wherein each of said first and said second resilient cylindrical sleeves is comprised of a single intermediate resilient cylindrical sleeve positioned directly between said single inner cylindrical sleeve and said outer retaining tube.

5. A bushing assembly comprising:

a pin having a central body extending between pin ends and defining a pin axis;

a bracket having structure for attachment to an axle housing, and wherein said pin ends comprise a first pin end supported by said bracket and a second pin end supported by said bracket;

a first bushing having a first inner sleeve fixed to said central body and a first resilient sleeve fixed to an outer circumference of said first inner sleeve;

a second bushing having a second inner sleeve fixed to said central body and a second resilient sleeve fixed to an outer circumference of said second inner sleeve, said second bushing being axially spaced from said first bushing along said pin axis;

a washer supported by said pin and positioned between said first and said second bushings along said pin axis; and

an outer sleeve having first and second transversely extending end portions that directly engage opposing outboard edges of said first and said second resilient sleeves, respectively, said first and second transversely extending end portions forming axial load carrying surfaces for said first and said second bushings.

6. The bushing assembly according to claim 5 wherein said pin ends are adapted to mount the bushing assembly between an axle housing and a suspension component.

7. The bushing assembly according to claim 5 wherein said first and said second resilient sleeves have a generally constant outer diameter that is greater than a diameter of said washer.

8. The bushing assembly according to claim 5 wherein an inner surface of said outer sleeve is radially spaced from an outer circumferential edge of said washer to define an annular space.

9. The bushing assembly according to claim 5 wherein said outer sleeve, said washer, and said first and said second inner sleeves are formed from a steel material.

10. The bushing assembly according to claim 5 wherein said first and said second inner sleeves each comprise rigid cylindrical tubes, and wherein said first and said second resilient sleeves each comprise resilient cylindrical tubes.

11. A suspension assembly comprising:

at least one suspension arm; and

a bushing assembly supported by said at least one suspension arm, said bushing assembly including a pin having a pair of pin ends adapted for mounting to an axle housing, a bracket to be fixed to a housing leg of the axle housing wherein said pair of pin ends comprises a first pin end supported by said bracket and a second pin end supported by said bracket, a first bushing fixed to said pin, a second bushing fixed to said pin and laterally spaced from said first bushing, a washer supported by said pin and positioned intermediate said first and said second bushings, and an outer sleeve engaging an outer circumferential surface of said first and said second bushings.

12. The suspension assembly according to claim 11 wherein said first and said second bushings each include an inboard edge and an outboard edge with said washer being in direct engagement with said inboard edges of said first and said second bushings and wherein said outer sleeve includes opposing deformed end portions directly engaging said outboard edges of said first and second bushings to form axial load carrying surfaces for said first and said second bushings.

13. The suspension assembly according to claim 11 wherein said first and said second bushings each include an inner cylindrical sleeve mounted to said pin, and an intermediate cylindrical sleeve comprised of a resilient material surrounding said inner cylindrical sleeve with said outer sleeve surrounding said intermediate cylindrical sleeve.

Assignments (2)
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 →