IP Library Granted Patent US 11,143,263
Granted Patent B2
US 11,143,263 · App. 16/526,848 · Granted Oct 12, 2021

Shock absorber with pressure-controlled damping

Inventor: Dustin F. Janes (Santa Cruz, CA)
Assignee: Fox Factory, Inc.
F16F9/44B60G13/08B60G15/12B60G17/056B60G17/08F16F9/064F16F9/065F16F9/19F16F9/3235F16F9/34F16F9/3405F16F9/516B60G2202/154B60G2500/11B60G2500/20B60G2500/206B62K25/14F16F9/20F16F9/3214
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Quick Facts
Patent No.
US 11,143,263
App. No.
16/526,848
Granted
Oct 12, 2021
Kind
B2
Abstract

A damper includes a pressure-sensitive damping control circuit that selectively permits fluid flow from a first chamber to a second chamber. A piston varies a volume of the first chamber. A blow-off piston is movable between a closed position, wherein fluid flow through the control circuit is substantially prevented, and an open position, wherein fluid flow through the control circuit is permitted. The damper also includes a first source of pressure. A fluid pressure created by compression of the damper applies an opening force to the blow-off piston moving the blow-off piston in a direction toward the open position against a resistance force provided by the first source of pressure. The resistance force exceeds the opening force until the pressure created by forces tending to insert the piston rod into the first fluid chamber exceeds the pressure in the first source of pressure by a predetermined amount.

Claims (45)

1. A pressure-sensitive damper, comprising:

a first cylinder at least partially defining a first fluid chamber, said first fluid chamber containing a damping fluid;

a damping piston for reciprocal motion within said first cylinder;

a piston rod comprising:

a first end connected to said damping piston; and

a second end extending through an end of said first cylinder;

a second cylinder at least partially defining a second fluid chamber in fluid communication with said first cylinder;

a compression damping plate fixed in said second cylinder;

at least one passage in said compression damping plate through which said damping fluid, which is displaced by a movement of said piston rod, flows in a first direction from said first fluid chamber to said second fluid chamber to achieve a first fluid flow;

a gas chamber in communication with said second fluid chamber;

a valve for generating a resistance force to said first fluid flow, wherein said resistance force varies according to an amount of force communicated to said valve by said gas chamber, wherein said valve comprises:

an intensifier piston comprising:

a first end; and

a second end, wherein a pressure within said gas chamber generates a force on said first end of said intensifier piston and generates an intensified pressure at said second end of said intensifier;

an intermediate chamber in fluid communication with said intensifier piston, wherein a pressure within said intermediate chamber acts on said intensifier piston, said pressure within said intermediate chamber providing force on said second end of said intensifier piston tending to counteract an amount of said force generated on said first end of said intensifier piston by said pressure within said gas chamber; and

an annular chamber with an externally-adjustable volume, said annular chamber in fluid communication with said intermediate chamber.

2. The pressure-sensitive damper of claim 1 , further comprising:

a blow-off piston having a first position in engagement with said at least one passage and a second position removed from said at least one passage; and

wherein said intensified pressure is communicated to said blow-off piston to create a first force urging said blow-off piston toward said first position.

3. The pressure-sensitive damper of claim 1 , further comprising:

a by-pass circuit adapted to permit a flow of said damping fluid in said first direction through said compression damping plate without passing through said at least one passage.

4. The pressure-sensitive damper of claim 1 , wherein said pressure within said gas chamber is adjustable.

5. The pressure-sensitive damper of claim 2 , wherein said blow-off piston moves in an axial direction between said first position and said second position.

6. A pressure-sensitive damper, comprising:

a first cylinder at least partially defining a first fluid chamber, said first fluid chamber containing a damping fluid;

a damping piston for reciprocal motion within said first cylinder;

a piston rod comprising:

a first end connected to said damping piston; and

a second end extending through an end of said first cylinder;

a second cylinder at least partially defining a second fluid chamber in fluid communication with said first cylinder;

a compression damping plate fixed in said second cylinder;

at least one passage in said compression damping plate through which said damping fluid, which is displaced by a movement of said piston rod, flows in a first direction from said first fluid chamber to said second fluid chamber to achieve a first fluid flow;

a gas chamber in communication with said second fluid chamber;

a valve for generating a resistance force to said first fluid flow, wherein said resistance force varies according to an amount of force communicated to said valve by said gas chamber;

a by-pass circuit adapted to permit a flow of said damping fluid in said first direction through said compression damping plate without passing through said at least one passage, wherein said valve comprises:

an intensifier piston comprising:

a first end; and

a second end, wherein a pressure within said gas chamber generates a force on said first end of said intensifier piston and generates an intensified pressure at said second end of said intensifier;

an intermediate chamber in fluid communication with said intensifier piston, wherein a pressure within said intermediate chamber acts on said intensifier piston, said pressure within said intermediate chamber providing force on said second end of said intensifier piston tending to counteract an amount of said force generated on said first end of said intensifier piston by said pressure within said gas chamber; and

an annular chamber with an externally-adjustable volume, said annular chamber in fluid communication with said intermediate chamber.

7. The pressure-sensitive damper of claim 6 , further comprising:

a blow-off piston having a first position in engagement with said at least one passage and a second position removed from said at least one passage; and

wherein said intensified pressure is communicated to said blow-off piston to create a first force urging said blow-off piston toward said first position.

8. The pressure-sensitive damper of claim 6 , wherein said pressure within said gas chamber is adjustable.

9. The pressure-sensitive damper of claim 7 , wherein said blow-off piston moves in an axial direction between said first position and said second position.

Assignments (5)
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 059588/0805 →
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 Nov 9, 2020
From: JANES, DUSTIN F.
To: FOX FACTORY, INC.
Reel/Frame 054318/0752 →
PATENT SECURITY AGREEMENT Recorded Mar 13, 2020
From: FOX FACTORY, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 052163/0728 →