IP Library Granted Patent US 10,974,561
Granted Patent B2
US 10,974,561 · App. 16/450,540 · Granted Apr 13, 2021

Suspension element

Inventors: Patrick S. Dillman (Hartford, WI); Robert K. Sollenskog (Oshkosh, WI); Erik Ellifson (Oshkosh, WI); Aaron J. Rositch (Omro, WI)
Assignee: Oshkosh Defense, LLC
B60G15/12B60G17/08F16F9/06F16F9/062F16F9/063F16F9/067F16F9/3292F16F9/46B60G2202/152B60G2202/24B60G2202/30B60G2500/10B60G2500/2014
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,974,561
App. No.
16/450,540
Granted
Apr 13, 2021
Kind
B2
Abstract

A suspension element includes a main body having an internal volume configured to contain a liquid therein, a tubular element extending at least partially within the main body, the tubular element having an internal volume that defines a first fluid chamber configured to contain a compressible gas therein, a first piston separating the internal volume of the main body into a second fluid chamber and a third fluid chamber, a second piston positioned to separate the first fluid chamber from the second fluid chamber, and a flow control element disposed along a flow path between the second fluid chamber and the third fluid chamber. Movement of the tubular element generates a flow of the liquid through the flow control element to produce a damping force and changes the pressure of the compressible gas to produce a spring force.

Claims (31)

1. A suspension element, comprising:

a main body having an internal volume;

a tubular element extending at least partially within the main body, wherein the tubular element has an internal volume that defines a first fluid chamber, and wherein the main body and the tubular element each include a sidewall having an inner surface and an outer surface;

a first piston assembly separating the internal volume of the main body into a second fluid chamber and a third fluid chamber, the third fluid chamber defined by at least portions of the outer surface of the tubular element, the inner surface of the main body, and a surface of the first piston assembly;

a second piston assembly positioned to separate the first fluid chamber from the second fluid chamber, wherein the second piston assembly includes a first side that is directly exposed to the first fluid chamber and a second side that is directly exposed to the second fluid chamber; and

at least one flow control element disposed along a flow path between the second fluid chamber and the third fluid chamber, wherein the sidewall of the main body defines an aperture therethrough that forms a portion of the flow path, and wherein the first piston assembly is configured to prevent direct fluid communication between the second fluid chamber and the third fluid chamber during at least one of an extension and a contraction of the tubular element.

2. The suspension element of claim 1 , wherein the first piston assembly couples the tubular element to the main body.

3. The suspension element of claim 1 , wherein the first piston assembly extends between the tubular element and the inner surface of the main body.

4. The suspension element of claim 3 , further comprising a cap disposed over a first end of the main body.

5. The suspension element of claim 4 , further comprising a barrier coupled to a second end of the main body, wherein the barrier is annular and includes an aperture configured to receive the sidewall of the tubular element therethrough.

6. The suspension element of claim 5 , wherein the cap defines an aperture in fluid communication with the second fluid chamber and the third fluid chamber.

7. The suspension element of claim 6 , wherein the at least one flow control element is integrated into the cap.

8. The suspension element of claim 6 , wherein the at least one flow control element is coupled to the main body.

9. The suspension element of claim 5 , further comprising a manifold defining a passage that couples the second fluid chamber with the third fluid chamber, wherein the manifold defines at least a portion of the flow path.

10. The suspension element of claim 9 , wherein the manifold comprises a second tubular element, and wherein the sidewall of the main body is disposed at least partially within the second tubular element.

11. The suspension element of claim 1 , wherein the second fluid chamber and the third fluid chamber comprise hydraulic chambers configured to contain a hydraulic fluid therein.

12. A suspension assembly, comprising:

a wheel end assembly;

an upper support arm coupled to the wheel end assembly;

a lower support arm coupled to the wheel end assembly;

a suspension element coupled to at least one of the upper support arm and the lower support arm, the suspension element comprising:

a main body having an internal volume;

a tubular element extending at least partially within the main body, wherein the tubular element has an internal volume that defines a first fluid chamber, and wherein the main body and the tubular element each include a sidewall having an inner surface and an outer surface;

a first piston assembly separating the internal volume of the main body into a second fluid chamber and a third fluid chamber, the third fluid chamber defined by at least portions of the outer surface of the tubular element, the inner surface of the main body, and a surface of the first piston assembly;

a second piston assembly positioned to separate the first fluid chamber from the second fluid chamber, wherein the second piston assembly includes a first side that is directly exposed to the first fluid chamber and a second side that is directly exposed to the second fluid chamber; and

at least one flow control element disposed along a flow path between the second fluid chamber and the third fluid chamber, wherein the sidewall of the main body defines an aperture therethrough that forms a portion of the flow path, and wherein the first piston assembly is configured to prevent direct fluid communication between the second fluid chamber and the third fluid chamber during at least one of an extension and a contraction of the tubular element.

13. The suspension assembly of claim 12 , wherein the first piston assembly couples the tubular element to the main body.

14. The suspension assembly of claim 12 , wherein the first piston assembly extends between the tubular element and the inner surface of the main body.

15. The suspension assembly of claim 12 , further comprising a cap disposed over a first end of the main body.

16. The suspension assembly of claim 15 , wherein the at least one flow control element is integrated into the cap.

17. The suspension assembly of claim 12 , wherein the second fluid chamber and the third fluid chamber comprise hydraulic chambers configured to contain a hydraulic fluid therein.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2019
From: DILLMAN, PATRICK S.; SOLLENSKOG, ROBERT K.; ELLIFSON, ERIK; ROSITCH, AARON J.
To: OSHKOSH DEFENSE, LLC
Reel/Frame 049788/0193 →
Continuity (4)
Continuation 15954268 · Apr 16, 2018
Continuation 14684082 · Apr 10, 2015
Provisional Application 61978624 · Apr 11, 2014
Related Publication 20190308480A1 · Oct 10, 2019
Cited By (20)
US 12,252,017 US 12,311,754 US 12,319,160 US 12,351,028 US 12,358,361 US 12,365,234 US 12,427,847 US 12,441,177 US 12,491,943 US 12,515,591 US 12,528,447 US 12,583,309 US 12,584,715 US 12,589,661 US 12,594,925 US 12,636,946 US 12,661,972 US 12,686,378 US 12,689,085 US 12,741,527