IP Library › Granted Patent US 12,370,860
Granted Patent B1
US 12,370,860 · App. 18/762,101 · Granted Jul 29, 2025

Position dependent damper

Inventors: Erik S. Ellifson (Oshkosh, WI); Patrick S. Dillman (Lannon, WI); Jason J. Zuleger (Appleton, WI); Aaron J. Rositch (Oshkosh, WI); Robert K. Sollenskog (Oshkosh, WI)
Assignee: OSHKOSH DEFENSE, LLC
B60G17/08B60G11/265B60G13/08B60G21/073F16F9/19F16F9/28F16F9/346F16F9/48B60G2202/24B60G2500/10F16F9/185
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Quick Facts
Patent No.
US 12,370,860
App. No.
18/762,101
Granted
Jul 29, 2025
Kind
B1
Abstract

A damper assembly includes a housing including a wall defining a first aperture fluidly coupled to a second aperture, a first tubular member coupled to the housing, a second tubular member extending between the wall and the first tubular member, a first plunger coupled to the second tubular member and in sliding engagement with an inner surface of the wall and an outer surface of the first tubular member, a third member extending within the first tubular member, and a second plunger coupled to the third member and in sliding engagement with an inner surface of the first tubular member.

Claims (36)

1. A damper assembly comprising:

a housing including a wall defining a first aperture fluidly coupled to a second aperture;

a first tubular member coupled to the housing;

a second tubular member extending between the wall and the first tubular member;

a first plunger coupled to the second tubular member and in sliding engagement with an inner surface of the wall and an outer surface of the first tubular member;

a third member extending within the first tubular member; and

a second plunger coupled to the third member and in sliding engagement with an inner surface of the first tubular member.

2. The damper assembly of claim 1 , wherein the third member is a third tubular member, further comprising a fourth tubular member extending through the second plunger and within the third tubular member.

3. The damper assembly of claim 1 , wherein the second tubular member is fixedly coupled to the third member.

4. The damper assembly of claim 1 , further comprising a third plunger coupled to the first tubular member and in sliding engagement with an inner surface of the second tubular member and an outer surface of the third member.

5. The damper assembly of claim 1 , wherein the damper assembly is configured to provide a damping force that varies based on a longitudinal position of the first plunger.

6. The damper assembly of claim 1 , wherein a first chamber is at least partially defined by the inner surface of the wall, an outer surface of the second tubular member, and a first surface of the first plunger, and wherein a second chamber is at least partially defined by the inner surface of the wall, the outer surface of the first tubular member, and a second surface of the first plunger.

7. The damper assembly of claim 6 , wherein, in a first position of the first plunger, the first aperture is in direct fluid communication with the first chamber and the second aperture is in direct fluid communication with the second chamber.

8. The damper assembly of claim 7 , wherein, in a second position of the first plunger, the first aperture and the second aperture are both in direct fluid communication with the second chamber.

9. The damper assembly of claim 1 , wherein the first tubular member at least partially defines a first chamber and a second chamber, the second chamber being separated from the first chamber by the second plunger.

10. The damper assembly of claim 9 , wherein the first tubular member, the second tubular member, and the third member share a common central axis.

11. The damper assembly of claim 9 , wherein the second tubular member and the third member are both coupled to a cap.

12. The damper assembly of claim 9 , wherein a third chamber is defined between the first tubular member and the second tubular member, and wherein the first tubular member defines a third aperture that fluidly couples the first chamber and the third chamber.

13. A damper assembly comprising:

a housing including a wall that defines an inner volume, a first aperture fluidly coupled to a second aperture, and a third aperture fluidly coupled to a fourth aperture; and

a piston slidably coupled to the housing and separating the inner volume into a first chamber and a second chamber,

wherein, in a first position of the piston, (a) the first aperture and the third aperture are in direct fluid communication with the first chamber and (b) the second aperture and the fourth aperture are in direct fluid communication with the second chamber; and

wherein, in a second position of the piston, (a) the first aperture, the second aperture, and the third aperture are in direct fluid communication with the first chamber and (b) the fourth aperture is in direct fluid communication with the second chamber.

14. The damper assembly of claim 13 , further comprising:

a first conduit extending outside of the inner volume and fluidly coupling the first aperture and the second aperture; and

a second conduit extending outside of the inner volume and fluidly coupling the third aperture and the fourth aperture.

15. The damper assembly of claim 14 , wherein the first conduit at least partially defines a flow path between the first aperture and the second aperture, the damper assembly further comprising a flow control device disposed along the flow path.

16. The damper assembly of claim 13 , wherein the wall defines a fifth aperture fluidly coupled to the first aperture and the second aperture.

17. The damper assembly of claim 16 , wherein, in the first position of the piston, (a) the first aperture, the third aperture, and the fifth aperture are in direct fluid communication with the first chamber and (b) the second aperture and the fourth aperture are in direct fluid communication with the second chamber.

18. A damper assembly comprising:

a tubular member;

a housing that receives the tubular member, the housing defining at least three first apertures that are part of a first flow path and at least three second apertures that are part of a second flow path; and

a piston that extends between the tubular member and the housing,

wherein the damper assembly is configured to provide a damping force that varies based on a longitudinal position of the piston relative to the housing.

19. The damper assembly of claim 18 , further comprising a plunger positioned within the tubular member.

20. The damper assembly of claim 18 , wherein the piston is coupled to the tubular member.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2025
From: ELLIFSON, ERIK S.; DILLMAN, PATRICK S.; ZULEGER, JASON J.; ROSITCH, AARON J.; SOLLENSKOG, ROBERT K.
To: OSHKOSH CORPORATION
Reel/Frame 071518/0815 →
MERGER Recorded Jun 25, 2025
From: OSHKOSH CORPORATION
To: OSHKOSH DEFENSE, LLC
Reel/Frame 071519/0195 →
Continuity (8)
Continuation 18196792 · May 12, 2023
Continuation 17464396 · Sep 1, 2021
Continuation 16512109 · Jul 15, 2019
Continuation 15804475 · Nov 6, 2017
Continuation 15048931 · Feb 19, 2016
Continuation 14334305 · Jul 17, 2014
Continuation 13792154 · Mar 10, 2013
Provisional Application 61615717 · Mar 26, 2012
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