IP Library › Granted Patent US 12,441,151
Granted Patent B1
US 12,441,151 · App. 18/886,637 · Granted Oct 14, 2025

Gas spring assembly for a vehicle suspension system

Inventors: Roy Venton-Walters (Neshkoro, WI); Aaron J. Rositch (Oshkosh, WI); Jesse L. Knoble (Oshkosh, WI); Erik Ellifson (Oshkosh, WI); Mark L. Steckling (Neenah, WI)
Assignee: OSHKOSH DEFENSE, LLC
B60G17/052B60G11/27B60G11/30B60G15/12B60G17/00B60G17/04B60G17/0408B60G17/0525F16F9/096B60G2202/152B60G2202/154B60G2202/32B60G2500/30
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Quick Facts
Patent No.
US 12,441,151
App. No.
18/886,637
Granted
Oct 14, 2025
Kind
B1
Abstract

A gas spring includes a cylinder, a rod movable relative to the cylinder, and an accumulator. The rod and the cylinder at least partially define a chamber having a variable volume and contain a first pressurized gas. The accumulator is in communication with the chamber and contains a second pressurized gas. The gas spring provides a variable spring rate based on a pressure of the first pressurized gas relative to a threshold pressure.

Claims (36)

1. A gas spring for a vehicle suspension, the gas spring comprising:

a cylinder;

a rod movable relative to the cylinder, the rod and the cylinder at least partially defining a chamber having a variable volume and containing a first pressurized gas; and

an accumulator in communication with the chamber and containing a second pressurized gas;

wherein the gas spring provides a variable spring rate based on a pressure of the first pressurized gas relative to a threshold pressure.

2. The gas spring of claim 1 , wherein the pressure of the first pressurized gas is at least partially based upon a position of the rod relative to the cylinder.

3. The gas spring of claim 1 , wherein the accumulator includes a rigid exterior that defines an accumulator volume and a movable component internal to the rigid exterior.

4. The gas spring of claim 3 , wherein the movable component separates the accumulator volume into a first portion and a second portion, wherein the first portion is in gaseous communication with the chamber, and wherein the second portion contains the second pressurized gas.

5. The gas spring of claim 4 , wherein the threshold pressure is a function of a pressure of the second pressurized gas within the second portion.

6. The gas spring of claim 5 , wherein the accumulator includes a port configured to facilitate changing the pressure of the second pressurized gas within the second portion.

7. The gas spring of claim 3 , wherein the movable component includes a diaphragm.

8. The gas spring of claim 3 , wherein the movable component is a bladder, the bladder containing the second pressurized gas therein.

9. The gas spring of claim 1 , further comprising a sensor coupled to at least one of the rod or the cylinder, the sensor configured to provide a signal indicative of a ride height of the vehicle suspension based upon a relative position of the rod and the cylinder.

10. A gas spring for a vehicle suspension, the gas spring comprising:

a cylinder defining a first chamber;

a rod movable relative to the cylinder; and

an accumulator coupled to the cylinder, the accumulator including:

a rigid exterior defining a second chamber; and

a bladder disposed within the second chamber, the bladder separating the second chamber into (a) a first accumulator portion in fluid communication with the first chamber and (b) a second accumulator portion.

11. The gas spring of claim 10 , wherein the accumulator includes a valve positioned between the first chamber and the first accumulator portion of the second chamber.

12. The gas spring of claim 10 , wherein the accumulator includes a port in fluid communication with the second accumulator portion of the second chamber.

13. The gas spring of claim 10 , further comprising a sensor configured to provide a signal indicative of a ride height of the vehicle suspension based upon a relative position of the rod and the cylinder.

14. The gas spring of claim 13 , wherein the sensor is a linear variable differential transformer having a shaft that extends through the cylinder to the rod.

15. The gas spring of claim 10 , wherein the gas spring provides a multi-stage spring rate.

16. The gas spring of claim 15 , wherein the multi-stage spring rate is adjustable by increasing or decreasing an initial gas pressure in the bladder.

17. A gas spring for a vehicle suspension, the gas spring comprising:

a cylinder;

a rod movable relative to the cylinder; and

an accumulator coupled to the cylinder;

wherein the gas spring provides a multi-stage spring rate; and

wherein the multi-stage spring rate is adjustable by increasing or decreasing an initial gas pressure in the accumulator.

18. The gas spring of claim 17 , wherein the accumulator includes:

a rigid exterior defining a chamber; and

a bladder disposed within the chamber, the bladder separating the chamber into (a) a first accumulator portion in fluid communication with the cylinder and (b) a second accumulator portion.

19. The gas spring of claim 18 , wherein the accumulator includes a port in fluid communication with the second accumulator portion of the chamber, the port configured to facilitate introducing or removing gas from the second accumulator portion.

20. The gas spring of claim 17 , further comprising a sensor configured to provide a signal indicative of a ride height of the vehicle suspension based upon a relative position of the rod and the cylinder.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2025
From: VENTON-WALTERS, ROY; ROSITCH, AARON J.; KNOBLE, JESSE L.; ELLIFSON, ERIK; STECKLING, MARK L.
To: OSHKOSH CORPORATION
Reel/Frame 072320/0225 →
MERGER Recorded Sep 20, 2025
From: OSHKOSH CORPORATION
To: OSHKOSH DEFENSE, LLC
Reel/Frame 072320/0237 →
Continuity (8)
Continuation 17576085 · Jan 14, 2022
Continuation 17462966 · Aug 31, 2021
Continuation 16515631 · Jul 18, 2019
Continuation 15631800 · Jun 23, 2017
Continuation 14671650 · Mar 27, 2015
Continuation 14305812 · Jun 16, 2014
Continuation 13908785 · Jun 3, 2013
Continuation 12872782 · Aug 31, 2010
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