IP Library Granted Patent US 11,828,376
Granted Patent B2
US 11,828,376 · App. 17/574,141 · Granted Nov 28, 2023

High stability regulator

Inventors: Jared Schlueter (Interlochen, MI); Dan Mizell (Traverse City, MI)
Assignee: The Oilgear Company
F16K17/0486F16K17/065Y10T137/2607
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Quick Facts
Patent No.
US 11,828,376
App. No.
17/574,141
Granted
Nov 28, 2023
Kind
B2
Abstract

A vent valve opens to provide a fluid path from a regulated pressure port to a vent port, a supply valve opens to provide a fluid path from the regulated pressure port to a supply pressure port. A control piston has a linear cam profile with a vent cam that opens the vent valve and a supply cam that opens the supply pressure valve.

Claims (38)

1. A hydraulic regulator comprising:

a vent valve that opens to provide a fluid path from a regulated pressure port to a vent port;

a supply valve that opens to provide a fluid path from the regulated pressure port to a supply pressure port; and

a control piston having a linear cam profile with a vent cam that opens the vent valve and a supply cam that opens the supply pressure valve;

wherein the vent cam and the supply cam are spaced apart axially along the control piston and the vent valve and the supply pressure valve are spaced apart from one another such that only one of the vent valve and the supply valve are opened at once;

wherein the control piston moves in a first direction to open the vent valve and in a second, opposite direction to open the supply valve and

wherein the control piston is exposed on a first end thereof to the regulated pressure port such that the piston moves in the first direction when a regulated pressure exceeds a predetermined limit.

2. The hydraulic regulator of claim 1 , wherein the control piston is exposed on a second, opposite end thereof, to a set spring.

3. The hydraulic regulator of claim 2 , wherein the control piston moves in the second direction when the regulated pressure on the first end exceeds a force of the set spring on the second end of the piston.

4. The hydraulic regulator of claim 1 , wherein the control piston is exposed on a second, opposite end thereof, to a hydraulic pilot pressure.

5. The hydraulic regulator of claim 4 , wherein the control piston moves in the second direction when the regulated pressure on the first end exceeds a force of the pilot pressure on the second end of the piston.

6. The hydraulic regulator of claim 5 , wherein a fluid pathway between the control piston and the pilot pressure is damped by a check valve with an orifice.

7. The hydraulic regulator of claim 1 , wherein the control piston is exposed on a second, opposite end thereof to a spring and a hydraulic pilot pressure.

8. The hydraulic regulator of claim 7 , wherein the control piston moves in the second direction when the regulated pressure on the first end exceeds a force of the pilot pressure and a force of the spring on the second end of the piston.

9. A hydraulic regulator comprising:

a pilot piston with an outer cam profile including a vent lobe at a first end of the cam profile and a first supply lobe on a distal second end of the cam profile, the vent lobe and the first supply lobe extending radially away from a flat medial portion of the cam profile;

a first ball actuating a vent valve upon contact with the vent lobe; and

a second ball actuating a first supply valve upon contact with the first supply lobe;

wherein the piston is biased to respond to a regulated pressure at a regulated port by moving axially first direction to bring the first ball in contact with the vent lobe when the regulated pressure exceeds a setpoint, and to respond to the regulated port pressure by moving axially in a second direction to bring the second ball in contact with the first supply lobe when the regulated pressure falls below the setpoint;

wherein opening of the vent valve exposes the regulated port to vent, and opening of the first supply valve exposes the regulated port to a supply pressure; and

wherein the outer cam profile is configured such that the vent valve and the first supply valve cannot open simultaneously.

10. The hydraulic regulator of claim 9 , wherein the vent lobe and the first supply lobe are offset from one another circumferentially on the outer cam profile.

11. The hydraulic regulator of claim 9 , further comprising a third ball actuating second supply valve upon contact with second supply lobe on the control piston.

12. The hydraulic regulator of claim 11 , wherein the second supply lobe is on the second distal end of the cam profile.

13. The hydraulic regulator of claim 12 , wherein the first and second supply lobes are offset circumferentially about 180 degrees from one another on the cam profile.

14. The hydraulic actuator of claim 9 , wherein the control piston is biased hydraulically.

15. The hydraulic actuator of claim 14 , further comprising a guide having an internal channel and fitted inside the outer cam profile, the internal channel providing the hydraulic bias of the control piston.

16. The actuator of claim 14 , further comprising a channel passing axially through the control piston and providing the hydraulic bias to the control piston on a first end thereof opposite a second end exposed to the regulated pressure.

17. A hydraulic actuator comprising:

a supply port, a vent port, and a regulated port;

a supply valve biased in a closed position, that provides a fluid connection from the supply port to the regulated port when in an open position;

a vent valve biased in a closed position that provides a fluid connection from the vent port to the regulated port when in an open position; and

a control piston having a first end and a second end with a linear cam profile between the first end and the second end, the outer cam profile having a narrower medial portion, a vent lobe on a first end, and a supply lobe on a second end;

wherein a first end of the control piston receives a biasing force and the second end of the piston is exposed to the regulated port;

wherein the control piston moves the vent lobe into contact with the vent valve thereby opening it when a pressure at the regulated port exceeds a set point;

wherein the control piston moves the supply lobe into contact with the supply valve thereby opening it when the pressure at the regulated port falls below the set point; and

wherein the supply valve and the vent valve are spaced with respect to the linear cam profile such that only one of the supply valve and the vent valve can be opened at once, but both the supply valve and the vent valve may be closed simultaneously.

18. The hydraulic actuator of claim 17 , wherein the control piston is spring biased on the first end thereof and receives a guide in a chamber in the second end thereof, the guide having an internal channel that with a fluid pathway to the regulated port.

Assignments (2)
SECURITY INTEREST Recorded Nov 21, 2024
From: CLOVER INDUSTRIES, INC.; THE OILGEAR COMPANY; TEXAS HYDRAULICS, INC.; OLMSTED PRODUCTS COMPANY LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 069365/0096 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2023
From: SCHLUETER, JARED; MIZELL, DAN
To: THE OILGEAR COMPANY
Reel/Frame 063077/0584 →