IP Library › Granted Patent US 7,950,373
Granted Patent B2
US 7,950,373 · App. 12/222,711 · Granted May 31, 2011

Check valve with separate spherical spring guide

Assignee: Caterpillar Inc.
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Quick Facts
Patent No.
US 7,950,373
App. No.
12/222,711
Granted
May 31, 2011
Kind
B2
Abstract

A check valve for use with a pump is disclosed. The check valve may have a body at least partially defining a central bore with an open end and a closed end, and a spring guide separate from the body and disposed within the closed end of the central bore. The check valve may also have a spring located within the central bore and having a first end operatively engaged with the spring guide, and a valve element operatively engaged with a second end of the spring and being movable by a pressure differential to compress the spring. The spring guide may be moveable relative to the body.

Claims (48)

1. A check valve, comprising:

a body at least partially defining a central bore having an open end and a closed end;

a spring guide separate from the body and disposed within the closed end of the central bore;

a spring located within the central bore and having a first end operatively engaged with the spring guide; and

a valve element operatively engaged with a second end of the spring and being movable by a pressure differential to compress the spring,

wherein the spring guide is moveable relative to the body.

2. The check valve of claim 1 , wherein the body includes at least one orifice located in an annular side wall of the central bore.

3. The check valve of claim 2 , wherein the valve element is movable from a flow passing position at which fluid from the open end of the central bore is allowed to flow through the at least one orifice, and a flow-blocking position at which fluid flow from the open end of the central bore through the at least one orifice is inhibited.

4. The check valve of claim 1 , wherein the spring guide includes a base and a stud protruding from the base, the stud being configured to engage a center portion of the spring.

5. The check valve of claim 4 , wherein the stud of the spring guide includes a first proximal portion of reduced diameter proximate the base and a second distal portion of enlarged diameter, the stud being configured to retain a portion of the spring between the second distal portion and the base.

6. The check valve of claim 1 , wherein the valve element includes a conical sealing surface.

7. The check valve of claim 1 , wherein the spring guide is pivotally movable relative to the body.

8. The check valve of claim 7 , wherein the spring guide includes an outer spherical surface configured to compliment a spherical end surface of the central bore.

9. The check valve of claim 1 , wherein the body includes:

a base portion at one end of the body;

a non-threaded cylindrical portion located at an opposing tip end of the body; and

a threaded portion located between the base portion and the non-threaded cylindrical portion.

10. The check valve of claim 9 , wherein the non-threaded cylindrical portion is a first non-threaded cylindrical portion and the body further includes a second non-threaded cylindrical portion located between the threaded portion and the base portion.

11. The check valve of claim 10 , wherein:

the first non-threaded cylindrical portion has a diameter smaller than a diameter of the threaded portion; and

the second non-threaded cylindrical portion has a diameter about equal to the diameter of the threaded portion.

12. The check valve of claim 10 , wherein the second non-threaded cylindrical portion has an axial length longer than an axial length of the first non-threaded cylindrical portion and shorter than an axial length of the threaded portion.

13. A check valve, comprising:

a body at least partially defining a central bore having an open end and a closed end;

a spring guide having a spherical portion received by the closed end of the central bore, wherein a surface of the spherical portion slidably engages a surface of the closed end;

a spring disposed within the central bore and having a first end operatively engaged with a portion of the spring guide opposite the spherical portion; and

a valve element operatively engaged with a second end of the spring and being movable by a pressure differential to compress the spring.

14. The check valve of claim 13 , wherein the body includes at least one orifice located in an annular side wall of the central bore.

15. The check valve of claim 14 , wherein the valve element is movable from a flow passing position at which fluid from the open end of the central bore is allowed to flow through the at least one orifice, and a flow-blocking position at which fluid flow from the open end of the central bore through the at least one orifice is inhibited.

16. The check valve of claim 13 , wherein the portion of the spring guide opposite the spherical portion includes a stud configured to engage a center portion of the spring.

17. The check valve of claim 16 , wherein the stud of the spring guide includes a first proximal portion proximate the spherical portion and having a diameter less than a second distal portion, the stud being configured to retain a portion of the spring between the second distal portion and the spherical portion.

18. The check valve of claim 13 , wherein the body includes:

a base portion at one end of the body;

a non-threaded cylindrical portion located at an opposing end of the body; and

a threaded portion located between the base portion and the non-threaded cylindrical portion.

19. The check valve of claim 18 , wherein the non-threaded cylindrical portion is a first non-threaded cylindrical portion and the body further includes a second non-threaded cylindrical portion located between the threaded portion and the base portion.

20. A fuel system, comprising:

a tank holding a supply of fuel;

a pump configured to draw fuel from the tank and pressurize the fuel, the pump including:

a housing at least partially defining a pumping chamber and a discharge passage extending from the pumping chamber; and

a plunger reciprocatingly disposed within the pumping chamber to discharge pressurized fuel from the pumping chamber to the discharge passage;

a common rail configured to receive pressurized fuel from the pump;

at least one fuel injector fluidly connected to the common rail; and

an outlet check valve fluidly coupled between the pump and the common rail, the outlet check valve including:

a body connected to the housing of the pump and at least partially defining a central bore having an open end fluidly connected to the discharge passage, a closed end, and at least one orifice fluidly extending through an annular side wall of the central bore between the open and closed ends and being fluidly connected to the common rail;

a spring guide separate from and movable relative to the body, the spring guide having a spherical portion received by the closed end of the central bore and a stud extending from the spherical portion;

a spring disposed within the central bore and having a first end operatively engaged with the stud of the spring guide; and

a valve element operatively engaged with a second end of the spring and being movable by a pressure differential to compress the spring and selectively communicate the discharge passage with the common rail via the at least one orifice.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2008
From: HEFLER, GREGORY W.; LONG, MICHAEL C.; RAJAGOPALAN, SENTHILKUMAR; FULLER, DONALD A.
To: CATERPILLAR INC.
Reel/Frame 021447/0893 →
Continuity (1)
Related Publication 20100037965A1 · Feb 18, 2010