IP Library Granted Patent US 10,272,733
Granted Patent B2
US 10,272,733 · App. 12/564,875 · Granted Apr 30, 2019

Method and apparatus for a pneumatically sprung caster mechanism

Inventor: William E. Woodbury, II (Mesa, AZ)
Assignee: Suspension Systems Technologies, LLC
B60G17/0162B60G17/08B60G2200/30B60G2202/412B60G2300/32B60G2400/104B60G2400/252B60G2500/30B60G2800/24
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Quick Facts
Patent No.
US 10,272,733
App. No.
12/564,875
Granted
Apr 30, 2019
Kind
B2
Abstract

A method and apparatus for a pneumatically sprung caster mechanism to provide a pneumatically controlled ride height for a platform attached to the caster. The caster is mounted to a first end of a pivoting axle, while a piston is mounted to the opposite end of the pivoting axle. The length of the piston is pneumatically controlled to rotate the pivoting axle to either increase, or decrease, the distance between the caster and the platform. Suspension is provided through interaction of the piston with an air reservoir, whereby minute variations in the length of the piston are absorbed by the elasticity of the walls of the air reservoir. A free-flow of air is facilitated such that air forced out of the piston during contraction may be collected by the air reservoir and air required by the piston during expansion may be provided by the air reservoir.

Claims (44)

1. A pneumatically sprung caster, comprising:

a caster, the caster being adapted to rotate about an axis of the caster;

a pivoting axle having a first end coupled to the axis of the caster and a second end coupled to a support structure, the caster, pivoting axle and support structure being adapted to swivel in a circular direction;

an air bladder coupled to the pivoting axle;

a valve coupled to the air bladder;

a reservoir coupled to the valve;

wherein an equilibrium length of the air bladder is adjusted in response to actuation of the valve to receive air from the reservoir or exhaust air from the air bladder to adjust a height of the support structure;

a first switch magnetically coupled to the air bladder and adapted to detect a first length of the air bladder; and

a second switch magnetically coupled to the air bladder and adapted to detect a second length of the air bladder.

2. The pneumatically sprung caster of claim 1 , further comprising a contact platform coupled to the support structure, the contact platform including,

a first surface having a plurality of conductive traces arranged as concentric circles; and

a second surface having a plurality of electrical contacts, each electrical contact being coupled to a corresponding conductive trace.

3. The pneumatically sprung caster of claim 2 , further comprising a controller movably coupled to the first surface of the contact platform, wherein electrical contact is maintained between the controller and each conductive trace of the contact platform during caster rotation.

4. The pneumatically sprung caster of claim 3 , further comprising a compressor coupled to the reservoir to maintain a threshold amount of air pressure within the reservoir.

5. A pneumatically sprung caster, comprising:

a caster, the caster being adapted to rotate about an axis of the caster;

a pivoting axle having a first end coupled to the axis of the caster and a second end coupled to a support structure, the caster, pivoting axle and support structure being adapted to swivel in a circular direction;

an air bladder coupled to the pivoting axle;

a valve coupled to the air bladder;

a reservoir coupled to the valve,

wherein an equilibrium length of the air bladder is adjusted in response to actuation of the valve to receive air from the reservoir or exhaust air from the air bladder to adjust a height of the support structure;

a contact platform coupled to the support structure, the contact platform including,

a first surface having a plurality of conductive traces arranged as concentric circles; and

a second surface having a plurality of electrical contacts, each electrical contact being coupled to a corresponding conductive trace; and

a controller movably coupled to the first surface of the contact platform, wherein electrical contact is maintained between the controller and each conductive trace of the contact platform during caster rotation.

6. The pneumatically sprung caster of claim 5 , further comprising:

a first switch magnetically coupled to the air bladder and adapted to detect a first length of the air bladder; and

a second switch magnetically coupled to the air bladder and adapted to detect a second length of the air bladder.

7. The pneumatically sprung caster of claim 5 , further comprising a compressor coupled to the reservoir to maintain a threshold amount of air pressure within the reservoir.

8. A pneumatically sprung caster, comprising:

a caster, the caster being adapted to rotate about an axis of the caster;

a pivoting axle having a first end coupled to the axis of the caster and a second end coupled to a support structure, the caster, pivoting axle and support structure being adapted to swivel in a circular direction;

an air bladder coupled to the pivoting axle;

a valve coupled to the air bladder;

a reservoir coupled to the valve,

wherein an equilibrium length of the air bladder is adjusted in response to actuation of the valve to receive air from the reservoir or exhaust air from the air bladder to adjust a height of the support structure;

a contact platform coupled to the support structure, the contact platform including,

a first surface having a plurality of conductive traces arranged as concentric circles; and

a second surface having a plurality of electrical contacts, each electrical contact being coupled to a corresponding conductive trace.

9. The pneumatically sprung caster of claim 7 , further comprising a controller movably coupled to the first surface of the contact platform, wherein electrical contact is maintained between the controller and each conductive trace of the contact platform during caster rotation.

10. The pneumatically sprung caster of claim 7 , further comprising:

a first switch magnetically coupled to the air bladder and adapted to detect a first length of the air bladder; and

a second switch magnetically coupled to the air bladder and adapted to detect a second length of the air bladder.

11. The pneumatically sprung caster of claim 7 , further comprising a compressor coupled to the reservoir to maintain a threshold amount of air pressure within the reservoir.

Assignments (5)
CHANGE OF NAME Recorded Dec 19, 2016
From: ZERO SHOCK SEATING, LLC
To: SUSPENSION SYSTEMS TECHNOLOGIES, LLC
Reel/Frame 041022/0984 →
SECURITY INTEREST Recorded Jul 22, 2015
From: ZERO SHOCK SEATING, LLC
To: BALSLEY, GREG; BALSLEY, LORI; SCHAFER, DAVE; SALVO, STEVE; SALVO, SANDI; GILBERT, BILL; GILBERT, CELESTE; KENNEDY, DON; LEE, RANDY; NIXON, JIMMY; RODD, KAREN; JOHNSON, CARY; WILLIAMS, BERNARD; BARRY, THOMAS; O'NEILL, KEVIN; JL HOLDINGS, INC.; HARE, ROBERT; GERIOS, TIM; LISZT, HOWARD; MONTGOMERY, JEFF; ROGERS, DAVE; JELINEK, RICK; COLEMAN, RANDALL; WHITMORE, BOB; KOEPPL, TIM; MARKS, MICHAEL; GALANTHAY, TED; LAPALM, MARK; SMALL TOWN LLC
Reel/Frame 036159/0827 →
SECURITY AGREEMENT Recorded Feb 5, 2014
From: ZERO SHOCK SEATING, LLC
To: STEVEN A. SALVO AND SANDRA J. SALVO, TRUSTEES, SALVO LIVING TRUST
Reel/Frame 032171/0971 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2013
From: ELLIPTICAL MOBILE SOLUTIONS, LLC
To: ZERO SHOCK SEATING, LLC
Reel/Frame 031169/0205 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2009
From: WOODBURY, WILLIAM E, II
To: ELLIPTICAL MOBILE SOLUTIONS, LLC
Reel/Frame 023271/0369 →
Continuity (5)
Continuation In Part 11608708 · Dec 8, 2006
Continuation In Part 11321944 · Dec 29, 2005
Continuation 11321970 · Dec 29, 2005
Continuation 11317414 · Dec 22, 2005
Related Publication 20100044990A1 · Feb 25, 2010