IP Library Granted Patent US 7,261,487
Granted Patent B2
US 7,261,487 · App. 10/631,477 · Granted Aug 28, 2007

Composite ball joint bearing for a ball joint assembly

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Quick Facts
Patent No.
US 7,261,487
App. No.
10/631,477
Granted
Aug 28, 2007
Kind
B2
Abstract

A ball joint assembly includes a housing ( 12 ) defining a socket chamber ( 18 ) and having an opening ( 32 ); a composite ball joint bearing ( 20 ) disposed within the socket chamber; a ball stud ( 24 ) supported by the composite ball joint bearing and having a shank portion ( 30 ) which projects through the opening of the housing; and a seal assembly ( 40 ) adapted to seal the opening between the ball stud and the socket chamber. The composite ball joint bearing is formed from a first plastic material ( 20 A) and a second magnetostrictive alloy material ( 20 B) which is adapted to change its shape when in the presence of a magnetic field to thereby change the rotational and oscillation properties of the ball joint assembly.

Claims (34)

1. A ball joint assembly adapted for use in a motor vehicle comprising:

a housing defining a socket chamber and having an opening;

a singular wholly solid composite ball joint bearing disposed within said socket chamber;

a ball stud supported by said singular wholly solid composite ball joint bearing, said ball stud having a shank portion which projects through said opening of said housing and a single spherical ball portion supported for rotation and pivoting movement about a center of oscillation of said ball joint assembly; and

a seal assembly adapted to seal said opening between said ball stud and said socket chamber;

wherein said single spherical ball portion of said ball stud is solely supported by said singular wholly solid composite ball joint bearing within said chamber and wherein said singular wholly solid composite ball joint bearing consists of a combination of a first plastic material and a second magnetostrictive alloy material, wherein solid particles of said magnetostrictive alloy material are uniformly randomly dispersed within solid particles of said plastic materials, which is adapted to change its shape when in the presence of a magnetic field applied by an electro-magnet carried within said ball joint assembly to thereby change the rotational and oscillation properties of said ball joint assembly.

2. The ball joint assembly according to claim 1 wherein said first plastic material is molded during a molding process and said second magnetostrictive alloy material is integrally molded therewith during the molding process.

3. The ball joint assembly according to claim 1 wherein said first plastic material is molded during a molding process and said second magnetostrictive alloy material is joined to said molded first plastic material subsequent to the molding process.

4. The ball joint assembly according to claim 1 wherein said singular wholly solid composite ball joint bearing is molded from a mixture of said first plastic material and said second magnetostrictive alloy material, wherein said second magnetostrictive alloy material is in a powder form.

5. The ball joint assembly according to claim 1 wherein said singular wholly solid composite ball joint bearing is molded from a mixture of said first plastic material and said second magnetostrictive alloy material, wherein said second magnetostrictive alloy material is in a non-powder form.

6. The ball joint assembly according to claim 1 wherein said at least one electro-magnet is carried by said housing.

7. The ball joint assembly according to claim 6 further including an electronic control unit operatively connected to said ball joint assembly, said electronic control unit receiving at least one input signal from at least one component of the vehicle and generating at least one output signal in the form of an electric current to said electro-magnet.

8. The ball joint according to claim 7 wherein said electronic control unit receives at least one input signal from one of the group consisting of a steering rate sensor, a yaw rate sensor, and a vehicle acceleration sensor.

9. The ball joint assembly according to claim 1 further including at least one electro-magnet carried by said housing and an electronic control unit operatively connected to said ball joint assembly, said electronic control unit receiving at least one input signal from said ball joint assembly and generating at least one output signal in the form of an electric current to control at least one adjustable rate suspension component of the vehicle.

10. The ball joint assembly according to claim 1 further including at least one electro-magnet carried by said housing and an electronic control unit operatively connected to said ball joint assembly, said electronic control unit receiving at least one first input signal from at least one component of the vehicle and at least one second input signal from said ball joint assembly, and generating at least one first output signal in the form of an electric current to said electro-magnet and at least one second output signal in the form of an electric current to control at least one adjustable rate suspension component of the vehicle.

11. A ball joint assembly adapted for use in a motor vehicle comprising:

a housing defining a socket chamber and having an opening;

a singular wholly solid composite ball joint bearing disposed within said socket chamber;

a ball stud supported by said singular wholly solid composite ball joint bearing, said ball stud having a shank portion which projects through said opening of said housing and a single spherical ball portion supported for rotation and pivoting movement about a center of oscillation of said ball joint assembly;

a seal assembly adapted to seal said opening between said ball stud and said socket chamber; and

at least one electro-magnet carried by said housing;

wherein said single spherical ball portion of said ball stud is solely supported by said singular wholly solid composite ball joint bearing within said chamber and wherein said singular wholly solid composite ball joint bearing consist of a combination molded from a first plastic material and a second magnetostrictive alloy material, wherein solid particles of said magnetostrictive alloy materials are uniformly randomly dispersed within solid particles of said plastic material, which is adapted to change its shape when an electric current is applied to said electro-magnet to thereby change the rotational and oscillation properties of said ball joint assembly.

12. The ball joint assembly according to claim 11 wherein said second magnetostrictive alloy material is in a powder form.

13. The ball joint assembly according to claim 11 wherein said second magnetostrictive alloy material is in a non-powder form.

14. The ball joint assembly according to claim 11 further including an electronic control unit operatively connected to said ball joint assembly, said electronic control unit receiving at least one input signal from at least one component of the vehicle and generating at least one output signal in the form of an electric current to said electro-magnet.

15. The ball joint assembly according to claim 14 wherein said electronic control unit receives at least one input signal from one of the group consisting of a steering rate sensor, a yaw rate sensor, and a vehicle acceleration sensor.

16. The ball joint assembly according to claim 11 further including an electronic control unit operatively connected to said ball joint assembly, said electronic control unit receiving at least one input signal from said ball joint assembly and generating at least one output signal in the form of an electric current to control at least one adjustable rate suspension component of the vehicle.

17. The ball joint assembly according to claim 11 further including an electronic control unit operatively connected to said ball joint assembly, said electronic control unit receiving at least one first input signal from at least one component of the vehicle and at least one second input signal from said ball joint assembly, and generating at least one first output signal in the form of an electric current to said electro-magnet and at least one second output signal in the form of an electric current to control at least one adjustable rate suspension component of the vehicle.

18. A ball joint assembly adapted for use in a motor vehicle comprising:

a housing defining a socket chamber and having an opening;

a singular wholly solid composite ball joint bearing disposed within said socket chamber;

a ball stud supported by said singular wholly solid composite ball joint bearing, said ball stud having a shank portion which projects through said opening of said housing and a single spherical ball portion supported for rotation and pivoting movement about a center of oscillation of said ball joint assembly; and

at least one electro-magnet is carried by said housing;

wherein said single spherical ball portion of said ball stud is solely supported by said singular wholly solid composite ball joint bearing within said chamber and wherein said singular wholly solid composite ball joint bearing is a one-piece integrally molded composite ball joint bearing formed from a first plastic material and a second magnetostrictive alloy material, where solid particles of said magnetostrictive alloy material are uniformly randomly dispersed within solid particles of said plastic material, which is adapted to change its shape when in the presence of a magnetic field applied by said electro-magnet to thereby change the rotational and oscillation properties of said ball joint assembly.

Assignments (3)
SECURITY INTEREST Recorded Mar 31, 2005
From: KELSEY-HAYES COMPANY; TRW AUTOMOTIVE U.S. LLC; TRW VEHICLE SAFETY SYSTEMS INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 015991/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2003
From: URBACH, BRIAN A.
To: TRW AUTOMOTIVE U.S. LLC
Reel/Frame 014681/0778 →
SECURITY AGREEMENT Recorded Oct 17, 2003
From: TRW AUTOMOTIVE U.S. LLC
To: JP MORGAN CHASE BANK, AS ADMINISTRATIVE AGENT
Reel/Frame 014590/0771 →