IP Library Granted Patent US 11,204,044
Granted Patent B2
US 11,204,044 · App. 16/737,324 · Granted Dec 21, 2021

Hydraulic actuator control system

Inventors: Joshua Zimmerman (Willow Springs, IL); Navneet Gulati (Naperville, IL)
Assignee: CNH Industrial America LLC
F15B11/0426
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Quick Facts
Patent No.
US 11,204,044
App. No.
16/737,324
Granted
Dec 21, 2021
Kind
B2
Abstract

A hydraulic actuator control system that includes an actuator. A pump pumps a hydraulic fluid to move the actuator. A first control valve fluidly couples to the pump. The first control valve provides a first hydraulic fluid flow to the actuator. A maximum first hydraulic fluid flow through the first control valve is less than a maximum required hydraulic fluid flow of the actuator. A second control valve fluidly couples to the pump. The second control valve provides a second hydraulic fluid flow to the actuator. A maximum second hydraulic fluid flow through the second control valve is less than the maximum required hydraulic fluid flow of the actuator. A controller controls the first control valve and the second control valve to provide the hydraulic fluid to the actuator.

Claims (42)

1. A hydraulic actuator control system, comprising:

an actuator configured to move;

a pump configured to pump a hydraulic fluid to move the actuator;

a first control valve fluidly coupled to the pump, wherein the first control valve is configured to provide a first hydraulic fluid flow to the actuator, and a maximum first hydraulic fluid flow through the first control valve is less than a maximum actuator hydraulic fluid flow of the actuator;

a second control valve fluidly coupled to the pump, wherein the second control valve is configured to provide a second hydraulic fluid flow to the actuator, and a maximum second hydraulic fluid flow through the second control valve is less than the maximum actuator hydraulic fluid flow of the actuator; and

a controller configured to control the first control valve and the second control valve to provide the hydraulic fluid to the actuator;

wherein the controller is configured to control the first control valve and the second control valve based on a selected mode of operation of a plurality of modes of operation; and

wherein the plurality of modes of operation comprises:

a first mode of operation, wherein the controller, while operating in the first mode of operation, is configured to open the first control valve to provide the first hydraulic fluid flow to the actuator and configured to open the second control valve only after the first hydraulic fluid flow through the first control valve is maximized to provide the second hydraulic fluid flow to the actuator; and

a second mode of operation, wherein the controller, while operating in the second mode of operation, is configured to open the first control valve, and before maximizing the first hydraulic fluid flow through the first control valve, the controller is configured to open the second control valve to provide the actuator with the second hydraulic fluid flow.

2. The hydraulic actuator control system of claim 1 , wherein the maximum first hydraulic fluid flow is greater than the maximum second hydraulic fluid flow of the second control valve.

3. The hydraulic actuator control system of claim 1 , wherein the plurality of modes of operation comprises a third mode of operation, and the controller, while operating in the third mode of operation, is configured to simultaneously open the first control valve and the second control valve to provide the first hydraulic fluid flow and the second hydraulic fluid flow to the actuator.

4. The hydraulic actuator control system of claim 1 , wherein the controller is configured to control the first control valve and the second control valve in response to input from a joystick.

5. The hydraulic actuator control system of claim 4 , wherein the controller is configured to determine the selected mode of operation based on movement of the joystick.

6. The hydraulic actuator control system of claim 1 , wherein the actuator is a boom hydraulic cylinder on a work vehicle.

7. The hydraulic actuator control system of claim 1 , comprising an input system communicatively coupled to the controller, wherein the controller is configured to receive the selected mode of operation from the input system.

8. A work vehicle with a hydraulic actuator control system, comprising:

a boom hydraulic cylinder configured to control movement of an attachment coupled to the work vehicle;

a pump coupled to the work vehicle and configured to pump a hydraulic fluid to actuate the boom hydraulic cylinder;

a first control valve fluidly coupled to the pump, wherein the first control valve is configured to provide a first hydraulic fluid flow to the boom hydraulic cylinder, and a maximum first hydraulic fluid flow through the first control valve is less than a maximum cylinder hydraulic fluid flow of the boom hydraulic cylinder;

a second control valve fluidly coupled to the pump, wherein the second control valve is configured to provide a second hydraulic fluid flow to the boom hydraulic cylinder, and a maximum second hydraulic fluid flow through the second control valve is less than the maximum cylinder hydraulic fluid flow of the boom hydraulic cylinder; and

a controller configured to control the first control valve and the second control valve to provide the hydraulic fluid to the boom hydraulic cylinder;

wherein the controller is configured to control the first control valve and the second control valve based on a selected mode of operation of a plurality of modes of operation; and

wherein the plurality of modes of operation comprises:

a first mode of operation, wherein the controller, while operating in the first mode of operation, is configured to open the first control valve to provide the first hydraulic fluid flow to the boom hydraulic cylinder and configured to open the second control valve only after the first hydraulic fluid flow through the first control valve is maximized to provide the second hydraulic fluid flow to the boom hydraulic cylinder; and

a second mode of operation, wherein the controller, while operating in the second mode of operation, is configured to open the first control valve, and before maximizing the first hydraulic fluid flow through the first control valve, the controller is configured to open the second control valve to provide the boom hydraulic cylinder with the second hydraulic fluid flow.

9. The work vehicle of claim 8 , wherein the maximum first hydraulic fluid flow of the first control valve is greater than the maximum second hydraulic fluid flow of the second control valve.

10. The work vehicle of claim 8 , wherein the plurality of modes of operation comprises a third mode of operation, and the controller, while operating in the third mode of operation, is configured to simultaneously open the first control valve and the second control valve to provide the first hydraulic fluid flow and the second hydraulic fluid flow to the boom hydraulic cylinder.

11. The work vehicle of claim 8 , comprising an input system communicatively coupled to the controller, wherein the controller is configured to receive the selected mode of operation from the input system.

12. The work vehicle of claim 8 , wherein the controller is configured to control the first control valve and the second control valve in response to input from a joystick.

13. The work vehicle of claim 12 , wherein the controller is configured to determine the selected mode of operation based on movement of the joystick.

14. A hydraulic actuator system, comprising:

a controller comprising a processor and a memory, wherein the controller is configured to control a first control valve and a second control valve based on a selected mode of operation of a plurality of modes of operation;

wherein the first control valve is configured to provide a first hydraulic fluid flow to an actuator, a maximum first hydraulic fluid flow through the first control valve is less than a maximum actuator hydraulic fluid flow of the actuator, the second control valve is configured to provide a second hydraulic fluid flow to the actuator, and a maximum second hydraulic fluid flow through the second control valve is less than the maximum actuator hydraulic fluid flow of the actuator; and

wherein the plurality of modes of operation comprises:

a first mode of operation, wherein the controller, while operating in the first mode of operation, is configured to open the first control valve to provide the first hydraulic fluid flow to the actuator and configured to open the second control valve only after the first hydraulic fluid flow through the first control valve is maximized to provide the second hydraulic fluid flow to the actuator; and

a second mode of operation, wherein the controller, while operating in the second mode of operation, is configured to open the first control valve, and before maximizing the first hydraulic fluid flow through the first control valve, the controller is configured to open the second control valve to provide the actuator with the second hydraulic fluid flow.

15. The hydraulic actuator system of claim 14 , wherein the plurality of modes of operation comprises a third mode of operation, and the controller, while operating in the third mode of operation, is configured to simultaneously open the first control valve and the second control valve to provide the first hydraulic fluid flow and the second hydraulic fluid flow to the actuator.

16. The hydraulic actuator system of claim 14 , wherein the maximum first hydraulic fluid flow is greater than the maximum second hydraulic fluid flow.

17. The hydraulic actuator system of claim 14 , wherein the controller is configured to control the first control valve and the second control valve in response to input from a joystick.

18. The hydraulic actuator system of claim 17 , wherein the controller is configured to determine the selected mode of operation based on movement of the joystick.

19. The hydraulic actuator system of claim 14 , wherein the controller is configured to receive the selected mode of operation from an input system.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2022
From: CNH INDUSTRIAL AMERICA LLC
To: BLUE LEAF I.P., INC.
Reel/Frame 059262/0495 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2020
From: ZIMMERMAN, JOSHUA; GULATI, NAVNEET
To: CNH INDUSTRIAL AMERICA LLC
Reel/Frame 051453/0707 →
Continuity (1)
Related Publication 20210207621A1 · Jul 8, 2021