IP Library Granted Patent US 7,083,163
Granted Patent B2
US 7,083,163 · App. 10/665,061 · Granted Aug 1, 2006

Booster with spring to adapt air spring pressure for load dependent shock absorber

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Quick Facts
Patent No.
US 7,083,163
App. No.
10/665,061
Granted
Aug 1, 2006
Kind
B2
Abstract

A suspension system for a vehicle includes a frequency dependent damper (FDD) or shock absorber defining a first pressurized working chamber and an air spring assembly defining a second pressurized working chamber. A booster enables pressure communication between the first pressurized working chamber and the second pressurized working chamber. The booster includes a resilient member that effects booster performance.

Claims (57)

1. A suspension system for a vehicle, comprising:

a frequency dependent damper defining a first pressurized working chamber;

a first compressed gas disposed within said first pressurized working chamber;

an air spring assembly defining a second pressurized working chamber;

a second compressed gas disposed within said second pressurized chamber; and

a booster enabling gas pressure communication between said first pressurized working chamber and said second pressurized working chamber, said booster comprising:

a housing defining a third pressurized working chamber separate from said first and second pressurized working chambers, said third pressurized working chamber being in communication with said first and second compressed gasses;

a piston assembly disposed within said third pressurized working chamber; and

a resilient member disposed between said piston assembly and said housing for biasing said piston in a specified direction.

2. The suspension system of claim 1 further comprising a restrictor disposed between said air spring assembly and said booster to inhibit pressurized fluid flow therebetween.

3. The suspension system of claim 1 wherein said piston assembly comprises:

a first piston dividing said third working chamber into a first segmented chamber and a second segmented chamber; and

a second piston interconnected with said first piston and dividing said third working chamber into said second segmented chamber and a third segmented chamber.

4. The suspension system of claim 3 wherein said first segmented chamber is in fluid communication with said second pressurized working chamber and said third working chamber is in fluid communication with said first pressurized working chamber.

5. The suspension system of claim 4 wherein said first piston is of a larger diameter than said second piston.

6. A suspension system disposed between a sprung portion and an unsprung portion of a vehicle, comprising:

a frequency dependent damper defining a first pressurized working chamber;

a first compressed gas disposed within said first pressurized working chamber;

an air spring assembly integrated with said shock absorber and defining a second pressurized working chamber;

a second compressed gas disposed within said second pressurized chamber; and

a booster enabling gas pressure communication between said first pressurized working chamber and said second pressurized working chamber, said booster comprising:

a housing defining a third pressurized working chamber separate from said first and second pressurized working chambers, said third pressurized working chamber being in communication with said first and second compressed gasses;

a piston assembly disposed within said third pressurized working chamber; and

a resilient member disposed between said piston assembly and said housing for biasing said piston in a specified direction.

7. The suspension system of claim 6 wherein said piston assembly comprises:

a first piston dividing said third working chamber into a first segmented chamber and a second segmented chamber; and

a second piston interconnected with said first piston and dividing said third working chamber into said second segmented chamber and a third segmented chamber.

8. The suspension system of claim 7 wherein said first segmented chamber is in fluid communication with said second pressurized working chamber and said third working chamber is in fluid communication with said first pressurized working chamber.

9. The suspension system of claim 8 wherein said first piston is of a larger diameter than said second piston.

10. The suspension system of claim 6 further comprising a restrictor disposed between said air spring assembly and said booster to inhibit pressurized fluid flow therebetween.

11. A vehicle, comprising:

a sprung component;

an unsprung component; and

a suspension system disposed between said sprung portion and said unsprung portion, said suspension system comprising:

a frequency dependent damper defining a first pressurized working chamber;

a first compressed gas disposed within said first pressurized working chamber;

an air spring assembly defining a second pressurized working chamber;

a second compressed gas disposed within said second pressurized chamber; and

a booster enabling gas pressure communication between said first pressurized working chamber and said second pressurized working chamber, said booster comprising:

a housing defining a third pressurized working chamber separate from said first and second pressurized working chambers, said third pressurized working chamber being in communication with said first and second compressed gasses;

a piston assembly disposed within said third pressurized working chamber; and

a resilient member disposed between said piston assembly and said housing for biasing said piston in a specified direction.

12. The vehicle of claim 11 wherein said piston assembly comprises:

a first piston dividing said third working chamber into a first segmented chamber and a second segmented chamber; and

a second piston interconnected with said first piston and dividing said third working chamber into said second segmented chamber and a third segmented chamber.

13. The vehicle of claim 12 wherein said first segmented chamber is in fluid communication with said second pressurized working chamber and said third segmented chamber is in fluid communication with said first pressurized working chamber.

14. The vehicle of claim 13 wherein said first piston is of a large diameter than said second piston.

15. The vehicle of claim 11 further comprising a restrictor disposed between said air spring assembly and said booster to inhibit pressurized fluid flow therebetween.

16. The vehicle of claim 11 wherein said frequency dependent damper and said air spring assembly comprise an integrated shock assembly.

17. A suspension system for a vehicle, comprising:

a frequency dependent damper defining a first pressurized working chamber;

a first compressed gas disposed within said first pressurized working chamber;

an air spring assembly defining a second pressurized working chamber;

a second compressed gas disposed within said second pressurized chamber; and

a booster enabling gas pressure communication between said first pressurized working chamber and said second pressurized working chamber, said booster comprising:

a housing defining a third pressurized working chamber separate from said first and second pressurized working chambers, said third pressurized working chamber being in communication with said first and second compressed gasses; and

a piston assembly disposed within said third pressurized working chamber.

Assignments (7)
CONFIRMATION OF TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENT RIGHTS (R/F 19009/0247) Recorded Feb 26, 2021
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: TENNECO INC. (FORMERLY KNOWN AS TENNECO AUTOMOTIVE INC.); TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INTERNATIONAL HOLDING CORP.; TENNECO GLOBAL HOLDINGS INC.; THE PULLMAN COMPANY; TMC TEXAS INC.; CLEVITE INDUSTRIES INC.
Reel/Frame 055429/0284 →
RELEASE OF AMENDMENT TO SECURITY INTEREST Recorded Sep 16, 2010
From: U.S. BANK NATIONAL ASSOCIATION (AS SUCCESSOR IN INTEREST TO WACHOVIA BANK, NATIONAL ASSOCIATION)
To: TENNECO AUTOMOTIVE INC. (NOW KNOWN AS TENNECO INC.); TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INTERNATIONAL HOLDING CORP.; TENNECO GLOBAL HOLDINGS INC.; THE PULLMAN COMPANY; TMC TEXAS INC.; CLEVITE INDUSTRIES INC.
Reel/Frame 024996/0726 →
AMENDMENT TO SECURITY INTEREST IN UNITED STATES PATENTS Recorded Mar 14, 2007
From: TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INTERNATIONAL HOLDING CORP.; TENNECO GLOBAL HOLDINGS INC.; THE PULLMAN COMPANY; TMC TEXAS INC.; CLEVITE INDUSTRIES INC.; TENNECO INC. (FORMERLY KNOWN AS TENNECO AUTOMOTIVE INC.)
To: JPMORGAN CHASE BANK
Reel/Frame 019009/0247 →
AMENDMENT TO SECURITY INTEREST IN UNITED STATES PATENTS Recorded Apr 28, 2005
From: TENNECO AUTOMOTIVE INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INTERNATIONAL HOLDING CORP.; TENNECO GLOBAL HOLDINGS, INC.; THE PULLMAN COMPANY; TMC TEXAS INC.; CLEVITE INDUSTRIES INC.
To: WACHOVIA BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 015953/0848 →
SECURITY INTEREST Recorded Mar 11, 2004
From: TENNECO AUTOMOTIVE INC.
To: JPMORGAN CHASE BANK, AS ADMINISTRATIVE AGENT
Reel/Frame 014421/0639 →
AMENDMENT Recorded Dec 30, 2003
From: TENNECO AUTOMOTIVE INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INTERNATIONAL HOLDING CORP.; TENNECO GLOBAL HOLDINGS, INC.; PULLMAN COMPANY, THE; TMC TEXAS INC.; CLEVITE INDUSTRIES INC.
To: WACHOVIA BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 015023/0502 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2003
From: LEMMENS, LUC; SCHEL, JACOBUS
To: TENNECO AUTOMOTIVE OPERATING COMPANY, INC.
Reel/Frame 014530/0314 →