IP Library Granted Patent US 11,166,403
Granted Patent B2
US 11,166,403 · App. 16/099,601 · Granted Nov 9, 2021

Steered caster wheel systems

Inventors: Nathan D. Dockter (Pella, IA); Kent L. Thompson (Otley, IA); Curt T. Graham (Lynnville, IA); Kent M. Recker (Pella, IA)
Assignee: Vermeer Manufacturing Company
A01B69/007A01B49/00A01F15/08B60B33/026A01F2015/186B62D7/08
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Quick Facts
Patent No.
US 11,166,403
App. No.
16/099,601
Granted
Nov 9, 2021
Kind
B2
Abstract

Steered caster wheel systems that include a disengagement system to enable a caster wheel steering mode and non-caster wheel steering mode are disclosed. In some embodiments, the caster wheels are mounted to a subframe that may be independently suspended from the chassis of a vehicle such as a self-propelled vehicle.

Claims (42)

1. A steered caster wheel system comprising:

a chassis;

a caster wheel suspended from the chassis and having a steering axis, the caster wheel rotating about the steering axis through a range of swivel positions;

a suspension mechanism, the caster wheel being mounted to the suspension mechanism to enable the caster wheel to move relative to the chassis;

a steering mechanism connected to the caster wheel to control the swivel position of the caster wheel;

a steering actuator connected to the caster wheel and the steering mechanism; and

a disengagement system which selectively enables the steering actuator to change the swivel position of the caster wheel in response to movement of the steering mechanism in a caster wheel steering mode and disables the steering actuator from changing the swivel position of the caster wheel in a non-caster wheel steering mode, the disengagement system comprising a cylinder configured to selectively enable the steering actuator to change the swivel position of the caster wheel in response to movement of the steering mechanism in the caster wheel steering mode and disables the steering actuator from changing the swivel position of the caster wheel in the non-caster wheel steering mode, the cylinder being a three-position cylinder connected to the steering actuator and connected to the caster wheel.

2. The system as set forth in claim 1 wherein the steering actuator is selected from a hydraulic cylinder, a rack and pinion mechanism or a steering gear with pitman arm.

3. The system as set forth in claim 1 wherein the steering mechanism and the steering actuator are components of a caster wheel steering system, the steering system having only mechanical connections between the steering mechanism and the caster wheel.

4. The system as set forth in claim 1 wherein controlling the swivel position of the caster wheel is not a response to a control unit signal.

5. A steered caster wheel system comprising:

a chassis;

a caster wheel suspended from the chassis and having a steering axis, the caster wheel rotating about the steering axis through a range of swivel positions;

a suspension mechanism, the caster wheel being mounted to the suspension mechanism to enable the caster wheel to move relative to the chassis;

a steering mechanism connected to the caster wheel to control the swivel position of the caster wheel;

a steering actuator connected to the caster wheel and the steering mechanism; and

a disengagement system which selectively enables the steering actuator to change the swivel position of the caster wheel in response to movement of the steering mechanism in a caster wheel steering mode and disables the steering actuator from changing the swivel position of the caster wheel in a non-caster wheel steering mode, the disengagement system comprising a cylinder configured to selectively enable the steering actuator to change the swivel position of the caster wheel in response to movement of the steering mechanism in the caster wheel steering mode and disables the steering actuator from changing the swivel position of the caster wheel in the non-caster wheel steering mode, the disengagement system comprising a hydraulic circuit, the hydraulic circuit comprising a valve, the valve selectively enabling the cylinder to be pressurized in the caster wheel steering mode and to float in the non-caster wheel steering mode.

6. The system as set forth in claim 5 comprising a control unit comprising a processor and a memory, the memory storing instruction that, when executed by the processor, cause the processor to regulate the disengagement system.

7. The system as set forth in claim 6 comprising a mode selector for selecting the caster wheel steering mode or the non-caster wheel steering mode, the processor causing the disengagement system to enable the steering actuator to change the swivel position of the caster wheel in response to movement of the steering mechanism when the caster wheel steering mode is selected and to disable the steering actuator from changing the swivel position of the caster wheel when the non-caster wheel steering mode is selected.

8. A steered caster wheel system comprising:

a caster wheel having a steering axis, the caster wheel rotating about the steering axis through a range of swivel positions;

a steering mechanism for controlling the swivel position of the caster wheel;

a steering actuator; and

a disengagement cylinder connected to the steering actuator and connected to the caster wheel, the disengagement cylinder selectively enabling the steering actuator to change the swivel position of the caster wheel in response to movement of the steering mechanism in a caster wheel steering mode and disabling the steering actuator from changing the swivel position of the caster wheel in a non-caster wheel steering mode, the disengagement cylinder being a three-position cylinder connected to the steering actuator and connected to the caster wheel.

9. The system as set forth in claim 8 wherein the steering mechanism is connected to the steering actuator.

10. The system as set forth in claim 8 wherein the steering actuator is a hydraulic cylinder.

11. A vehicle having a steerable suspended caster wheel, the vehicle comprising:

a chassis;

a subframe independently suspended from the chassis to allow the subframe to move relative to the chassis as the vehicle travels over uneven terrain;

a caster wheel assembly rotatably mounted to the subframe at a swivel joint having a steering axis, the caster wheel assembly comprising:

a leg assembly; and

a caster wheel rotatably mounted to the leg assembly, the leg assembly and caster wheel being rotatable about the steering axis through a range of swivel positions; and

a steering actuator connected to the caster wheel to selectively control the swivel position of the caster wheel;

a steering mechanism connected to the steering actuator to control the steering actuator; and

a disengagement system which selectively enables the steering actuator to change the swivel position of the caster wheel in response to movement of the steering mechanism in a caster wheel steering mode and disables the steering actuator from changing the swivel position of the caster wheel in a non-caster wheel steering mode, the disengagement system comprising a variable length component connected between the steering actuator and the caster wheel, the variable length component being in a locked position in which the variable length component is at a fixed length in the caster wheel steering mode, the variable length component being in a float mode in which the length of the variable length component varies in the non-caster wheel steering mode.

12. The vehicle as set forth in claim 11 wherein the subframe has a lateral arm and a longitudinal arm that are each pivotally connected to the chassis.

13. The vehicle as set forth in claim 11 wherein the subframe is suspended from the chassis by a suspension element selected from a hydraulic cylinder, shock absorber, air spring, metal spring, or a rubber spring.

14. The vehicle as set forth in claim 11 further comprising a baler supported by the chassis.

15. The vehicle as set forth in claim 11 wherein the variable length component is a cylinder.

16. The vehicle as set forth in claim 15 wherein the disengagement system comprises a hydraulic circuit, the hydraulic circuit comprising a valve, the valve selectively enabling the cylinder to be pressurized in the caster wheel steering mode and to float in the non-caster wheel steering mode.

17. The vehicle as set forth in claim 16 comprising a control unit comprising a processor and a memory, the memory storing instruction that, when executed by the processor, cause the processor to regulate the disengagement system.

18. The vehicle as set forth in claim 11 wherein the steering mechanism is mechanically connected to the steering actuator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2019
From: RECKER, KENT M.; DOCKTER, NATHAN D.; THOMPSON, KENT L.; GRAHAM, CURT T.
To: VERMEER MANUFACTURING COMPANY
Reel/Frame 048438/0737 →
Continuity (3)
Provisional Application 62338812 · May 19, 2016
Provisional Application 62338850 · May 19, 2016
Related Publication 20190124820A1 · May 2, 2019
Cited By (2)
US 12,473,021 US 12,628,732