IP Library Granted Patent US 10,578,184
Granted Patent B2
US 10,578,184 · App. 15/965,642 · Granted Mar 3, 2020

Valve stiffness adjustment

Inventors: Damon Gilbert (Aptos, CA); William O. Brown, IV (Aptos, CA)
Assignee: Fox Factory, Inc.
F16F9/348B60G13/08B60G17/016B60G17/0152B60G17/08F16F9/19F16F9/3485F16F9/44F16F9/462F16F9/469F16F9/50F16F9/5165B60G2202/24B60G2206/41B60G2401/00B60G2401/28B60G2500/112B60G2600/20B60G2600/21B60G2800/162F16F2222/12F16F2228/066F16F2230/18
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Quick Facts
Patent No.
US 10,578,184
App. No.
15/965,642
Granted
Mar 3, 2020
Kind
B2
Abstract

A damper valve with an adjustable effective stiffness of a shim. The damper valve includes a piston. The piston has a fluid path formed therethrough. A shim is disposed proximate the fluid path formed through the piston. A stiffness adjustment feature is coupled to the shim, and the shim is disposed between the piston and the stiffness adjustment feature. The stiffness adjustment feature is configured to adjust the effective stiffness of the shim without affecting a preload applied to the shim.

Claims (56)

1. A damper valve with an adjustable effective stiffness of a shim, said damper valve comprising:

a fluid path formed through a piston, said shim disposed proximate said fluid path; and

a stiffness adjustment feature coupled to said shim; said shim disposed between said piston and said stiffness adjustment feature, said stiffness adjustment feature configured to adjust said effective stiffness of said shim without affecting a preload applied to said shim, wherein said stiffness adjustment feature comprises:

a stiffness adjustment plate;

a spring component coupled to said stiffness adjustment plate; and

an adjuster coupled to said stiffness adjustment plate, said adjuster comprising:

a first position which disposes said stiffness adjustment plate and said spring component in a first orientation with respect to each other, said first orientation of said stiffness adjustment plate and said spring component generating said effective stiffness of said shim; and

a second position which disposes said stiffness adjustment plate and said spring component in a second orientation with respect to each other, said second orientation of said stiffness adjustment plate and said spring component generating a second effective stiffness of said shim wherein said effective stiffness of said shim differs from said second effective stiffness of said shim.

2. The damper valve of claim 1 wherein said stiffness adjustment feature is configured such that movement of said stiffness adjuster feature varies said effective stiffness of said shim without altering an existing force which acts upon said shim.

3. The damper valve of claim 1 wherein said stiffness adjustment feature is configured such that movement of said stiffness adjuster feature varies said effective stiffness of said shim without moving said shim toward or away from said piston.

4. The damper valve of claim 1 wherein said damper valve is automatically adjustable.

5. The damper valve of claim 1 wherein said stiffness adjustment plate comprises:

a first surface disposed facing said shim; and

a second surface disposed facing said spring component.

6. The damper valve of claim 5 wherein said first surface of said stiffness adjustment plate further comprises:

a shim engagement portion extending from said first surface of said stiffness adjustment plate, said shim engagement portion configured to engage with said shim.

7. The damper valve of claim 5 wherein said second surface of said stiffness adjustment plate further comprises:

a spring component engagement portion extending from said second surface of said stiffness adjustment plate, said spring component engagement portion configured to engage with said spring component.

8. The damper valve of claim 7 wherein said spring component engagement portion is configured such that rotational movement of said stiffness adjustment plate with respect to said spring component varies a location at which said spring component engages with said spring component engagement portion of said stiffness adjustment plate.

9. The damper valve of claim 7 wherein said spring component engagement portion further comprises:

a first location, wherein upon engagement of said stiffness adjustment plate with said first location of said spring component engagement portion, said stiffness adjustment feature generates said effective stiffness of said shim; and

a second location, wherein upon engagement of said stiffness adjustment plate with said second location of said spring component engagement portion, said stiffness adjustment feature generates a second effective stiffness of said shim, wherein said effective stiffness of said shim and said second effective stiffness of said shim are different.

10. The damper valve of claim 7 wherein said spring component engagement portion further comprises:

a first location, wherein upon engagement of said stiffness adjustment plate with said first location of said spring component engagement portion, said spring component is configured apply a first amount of force against movement of said stiffness adjustment plate towards said spring component; and

a second location, wherein upon engagement of said stiffness adjustment plate with said second location of said spring component engagement portion, said spring component is configured apply a second amount of force against movement of said stiffness adjustment plate towards said spring component, wherein said first amount of force and said second amount of force are different.

11. The damper valve of claim 1 wherein said damper valve is disposed in a rebound circuit of a damper.

12. The damper valve of claim 1 wherein said damper valve is disposed in a high speed rebound circuit of a damper.

13. The damper valve of claim 1 wherein said damper valve is manually adjustable.

14. A suspension damper having an adjustable effective stiffness of a shim, said suspension damper comprising:

a housing enclosing a damping chamber;

a piston disposed within said damping chamber, said piston movable within said damping chamber, said piston dividing said damping chamber into a first region and a second region;

a fluid path formed through said piston, said shim disposed proximate said fluid path; and

a stiffness adjustment feature coupled to said shim; said shim disposed between said piston and said stiffness adjustment feature, said stiffness adjustment feature configured to adjust said effective stiffness of said shim without affecting a preload applied to said shim wherein said stiffness adjustment feature comprises:

a stiffness adjustment plate;

a spring component coupled to said stiffness adjustment plate; and

an adjuster coupled to said stiffness adjustment plate, said adjuster comprising:

a first position which disposes said stiffness adjustment plate and said spring component in a first orientation with respect to each other, said first orientation of said stiffness adjustment plate and said spring component generating said effective stiffness of said shim; and

a second position which disposes said stiffness adjustment plate and said spring component in a second orientation with respect to each other, said second orientation of said stiffness adjustment plate and said spring component generating a second effective stiffness of said shim wherein said effective stiffness of said shim differs from said second effective stiffness of said shim.

15. The suspension damper of claim 14 wherein said suspension damper is manually adjustable.

16. The suspension damper of claim 14 wherein said stiffness adjustment feature is configured such that movement of said stiffness adjuster feature varies said effective stiffness of said shim without altering an existing force which acts upon said shim.

17. The suspension damper of claim 16 wherein said stiffness adjustment feature is configured such that movement of said stiffness adjuster feature varies said effective stiffness of said shim without moving said shim toward or away from said piston.

18. The suspension damper of claim 14 wherein said suspension damper is automatically adjustable.

19. The suspension damper of claim 14 wherein said stiffness adjustment plate comprises:

a first surface disposed facing said shim; and

a second surface disposed facing said spring component.

20. The suspension damper of claim 19 wherein said first surface of said stiffness adjustment plate further comprises:

a shim engagement portion extending from said first surface of said stiffness adjustment plate, said shim engagement portion configured to engage with said shim.

21. The suspension damper of claim 19 wherein said second surface of said stiffness adjustment plate further comprises:

a spring component engagement portion extending from said second surface of said stiffness adjustment plate, said spring component engagement portion configured to engage with said spring component.

22. The suspension damper of claim 21 wherein said spring component engagement portion is configured such that rotational movement of said stiffness adjustment plate with respect to said spring component varies a location at which said spring component engages with said spring component engagement portion of said stiffness adjustment plate.

23. The suspension damper of claim 21 wherein said spring component engagement portion further comprises:

a first location, wherein upon engagement of said stiffness adjustment plate with said first location of said spring component engagement portion, said stiffness adjustment feature generates said effective stiffness of said shim; and

a second location, wherein upon engagement of said stiffness adjustment plate with said second location of said spring component engagement portion, said stiffness adjustment feature generates a second effective stiffness of said shim, wherein said effective stiffness of said shim and said second effective stiffness of said shim are different.

24. The suspension damper of claim 21 wherein said spring component engagement portion further comprises:

a first location, wherein upon engagement of said stiffness adjustment plate with said first location of said spring component engagement portion, said spring component is configured apply a first amount of force against movement of said stiffness adjustment plate towards said spring component; and

a second location, wherein upon engagement of said stiffness adjustment plate with said second location of said spring component engagement portion, said spring component is configured apply a second amount of force against movement of said stiffness adjustment plate towards said spring component, wherein said first amount of force and said second amount of force are different.

Assignments (6)
SECURITY INTEREST Recorded Oct 27, 2025
From: FOX FACTORY, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 073270/0027 →
RELEASE OF SECURITY INTEREST Recorded Apr 13, 2022
From: BANK OF AMERICA, N.A.
To: FOX FACTORY, INC.
Reel/Frame 059704/0224 →
SECURITY INTEREST Recorded Apr 5, 2022
From: FOX FACTORY, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 059616/0435 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2019
From: BROWN, WILLIAM O., IV
To: FOX FACTORY, INC.
Reel/Frame 051335/0843 →
PATENT SECURITY AGREEMENT Recorded Jun 5, 2019
From: FOX FACTORY, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 049388/0585 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2018
From: GILBERT, DAMON
To: FOX FACTORY, INC.
Reel/Frame 045661/0317 →
Cited By (8)
US 12,384,214 US 12,391,116 US 12,397,878 US 12,479,495 US 12,504,070 US 12,552,215 US 12,636,925 US 12,644,513