IP Library Granted Patent US 10,746,202
Granted Patent B2
US 10,746,202 · App. 16/038,399 · Granted Aug 18, 2020

Piston assembly for rephasing a fluid-driven actuator

Inventor: James L. Tetrick (Morton, IL)
Assignee: CNH Industrial America, LLC
F15B15/1447A01B63/22A01B63/32F15B11/20F15B13/024F15B20/007A01B49/027A01B73/02F15B11/048F15B15/225F15B2211/55F15B2211/7053F15B2211/7121
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Quick Facts
Patent No.
US 10,746,202
App. No.
16/038,399
Granted
Aug 18, 2020
Kind
B2
Abstract

In one aspect, a piston assembly for a fluid-driven actuator may include a piston defining a passage extending between first and second chambers of the actuator. The piston assembly may further include a valve having a valve head and a valve stem. The valve may be positioned within the passage and slidable between an open position and a closed position. The valve stem may extend outward from the passage into the second chamber when the valve is positioned in the closed position. Additionally, the piston assembly may include a spring compressed between the valve head and the piston. The spring may be configured to bias the valve to the closed position. The valve may be configured to move to the open position when a pressure in the second chamber exceeds a pressure threshold or when the valve stem contacts a cylinder of the fluid-driven actuator.

Claims (41)

1. A piston assembly for a fluid-driven actuator, the piston assembly comprising:

a rod;

a piston coupled to the rod, the piston separating first and second chambers of the fluid-driven actuator, the piston defining a passage extending between the first and second chambers, the piston further defining a valve seat;

a valve positioned within the passage and slidable between an open position in which the valve head permits fluid flow through the passage and a closed position in which the valve head occludes fluid flow through the passage, the valve including a valve head in contact the valve seat when the valve is positioned in the closed position, the valve further including a first valve stem extending outward from a first side of the valve head and the passage into the second chamber when the valve is positioned in the closed position, the valve further including a second valve stem extending out of a second side of the valve head, the second valve stem configured to limit the relative movement between the valve seat and the valve head;

a piston assembly component fixed relative to the piston and positioned external to the piston and the rod; and

a spring compressed between the valve head and the piston assembly component, the spring being configured to bias the valve to the closed position,

wherein the valve is configured to move to the open position when a pressure in the second chamber exceeds a pressure threshold or when the first valve stem contacts a cylinder of the fluid-driven actuator.

2. The piston assembly of claim 1 , wherein the passage includes a first passage portion and a second passage portion, the first passage portion having a first passage portion diameter and the second passage portion having a second passage diameter, the first passage portion diameter being larger than the second passage portion diameter.

3. The piston assembly of claim 2 , wherein the valve head is positioned within the first passage portion and has a valve head diameter, the valve head diameter being larger than the second passage portion diameter.

4. The piston assembly of claim 2 , wherein the first valve stem is positioned within the second passage portion and has a valve stem diameter, the valve stem diameter being smaller than the second passage portion diameter.

5. The piston assembly of claim 2 , wherein the first passage portion is in fluid communication with the first chamber when the valve is positioned in the closed position and the second passage is in fluid communication with the second chamber when the valve is positioned in the closed portion.

6. The piston assembly of claim 1 , wherein the pressure threshold is associated with a spring constant of the spring.

7. The piston assembly of claim 1 , wherein the piston assembly component comprises a washer positioned between the piston and a fastener configured to couple the piston to the rod.

8. An agricultural implement, comprising:

a plurality of agricultural implement components; and

first and second fluid-driven actuators, each fluid-driven actuator coupled between two of the plurality of agricultural implement components, each fluid-driven actuator comprising:

a cylinder defining first and second chambers;

a rod partially positioned within the cylinder

a piston coupled to the rod, the piston positioned within the cylinder, the piston separating first and second chambers, the piston defining a passage extending between the first and second chambers;

a valve including a valve head and a valve stem, the valve being positioned within the passage and slidable between an open position in which the valve head permits fluid flow through the passage and a closed position in which the valve head occludes fluid flow through the passage, the valve stem extending outward from the passage into the second chamber when the valve is positioned in the closed position;

a piston assembly component fixed relative to the piston and positioned external to the piston and the rod; and

a spring compressed between the valve head and the piston assembly component such that the spring is in direct contact with the piston assembly component, the spring being configured to bias the valve to the closed position,

wherein the valve is configured to move to the open position when a pressure in the second chamber exceeds a pressure threshold or when the valve stem contacts the cylinder.

9. The agricultural implement of claim 8 , wherein the first and second fluid-driven actuators are fluidly coupled to each other in series.

10. The agricultural implement of claim 8 , wherein the first and second fluid-driven actuators are rephased when each of the valves of the first and second fluid-driven actuators are positioned in the open position.

11. The agricultural implement of claim 8 , wherein the passage includes a first passage portion and a second passage portion, the first passage portion having a first passage portion diameter and the second passage portion having a second passage diameter, the first passage portion diameter being larger than the second passage portion diameter.

12. The agricultural implement of claim 11 , wherein the valve head is positioned within the first passage portion and has a valve head diameter, the valve head diameter being larger than the second passage portion diameter.

13. The agricultural implement of claim 11 , wherein the valve stem is positioned within the second passage portion and has a valve stem diameter, the valve stem diameter being smaller than the second passage portion diameter.

14. The agricultural implement of claim 11 , wherein the first passage portion is in fluid communication with the first chamber when the valve is positioned in the closed position and the second passage is in fluid communication with the second chamber when the valve is positioned in the closed portion.

15. The agricultural implement of claim 8 , wherein the pressure threshold is associated with a spring constant of the spring.

16. The agricultural implement of claim 8 , wherein the piston further defines a valve seat, the valve head being in contact the valve seat when the valve is positioned in the closed position.

17. The agricultural implement of claim 8 , wherein the piston assembly component comprises a washer positioned between the piston and a fastener configured to couple the piston to the rod.

18. The agricultural implement of claim 8 , wherein the spring is in direct contact with the valve head.

19. An agricultural implement, comprising:

a plurality of agricultural implement components; and

first and second fluid-driven actuators, each fluid-driven actuator coupled between two of the plurality of agricultural implement components, each fluid-driven actuator comprising:

a cylinder defining first and second chambers;

a piston positioned within the cylinder, the piston separating first and second chambers, the piston defining a passage extending between the first and second chambers, the passage including a first passage portion and a second passage portion, the first passage portion having a first passage portion diameter and the second passage portion having a second passage diameter, the first passage portion diameter being larger than the second passage portion diameter;

a valve including a valve head, a first valve stem extending outward from a first side of the valve head, and a second valve stem extending out of a second side of the valve head, the valve being positioned within the passage and slidable between an open position in which the valve head permits fluid flow through the passage and a closed position in which the valve head occludes fluid flow through the passage, the first passage portion being in fluid communication with the first chamber when the valve is positioned in the closed position, the second passage being in fluid communication with the second chamber when the valve is positioned in the closed portion; the first valve stem extending outward from the passage into the second chamber when the valve is positioned in the closed position, the second valve stem being configured to limit the relative movement between a valve seat and the valve head; and

a spring compressed between the valve head and the piston, the spring being configured to bias the valve to the closed position,

wherein the valve is configured to move to the open position when a pressure in the second chamber exceeds a pressure threshold or when the valve stem contacts the cylinder.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2020
From: CNH INDUSTRIAL AMERICA LLC
To: BLUE LEAF I.P., INC.
Reel/Frame 054302/0368 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2018
From: TETRICK, JAMES L.
To: CNH INDUSTRIAL AMERICA LLC
Reel/Frame 046381/0455 →
Continuity (1)
Related Publication 20200025223A1 · Jan 23, 2020
Cited By (1)
US 12,605,849