Fluid control valves

5752546
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Inventors

Yamashita, Shigeru

Application #

713232

Filed

Sep-12-1996

Published

May-19-1998

Current US Class

091/446
137/540
137/596
137/596.13

International Classes

F16K 015/02; F15B 013/08

Field of Search

91/446 137/596 137/540 137/596.13

Assignee

Shimadzu Corporation (JP)

Examiners

Michalsky; Gerald A.

Attorney, Agent or Firm

Majestic, Parsons, Siebert & Hsue P.C.

US Patent References

4519419   Hydraulic valves
4561463   Sectional valve hav...

Referenced by:

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Citation

Cite This Patent

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Abstract
Fluid control valves are combined to form a layered multi-directional valve, each having a high-pressure port connected to a high-pressure source, a tank port opened to a low-pressure region, an actuator port, a spool capable of connecting said actuator port selectively either to the high-pressure port or to the tank port, and a load check valve capable of blocking the passage of a fluid through the high-pressure port. The load check valve includes a poppet which encloses a spring chamber and is forwardly biased by a spring contained inside the spring chamber. The poppet is movable between a backward position and a forward position inside a valve-containing chamber which has an opening on a portion of the outer wall of the control valve but this opening is blocked by a portion of the outer wall of another similarly structured control valve. When the poppet is moved to its forward position, the poppet comes into contact with a seat disposed inside the high-pressure port to block it, but high-pressure oil on one side of the load check valve in the high-pressure port can flow into the spring chamber through an liquid inlet formed through the poppet. Grooves are formed either on the side of the poppet or on the side of the outer wall of the adjacent control valve which comes into contact with the poppet when the poppet is at its backward position.
 
Claims
What is claimed is:

1. A check valve for being inserted between an inlet side and an outlet side of a fluid passage for blocking a fluid flow in said fluid passage, said check valve comprising:

a poppet-containing chamber having an opening on a portion of an outer wall and connected to said fluid passage where said inlet side and said outlet side are separated from each other;

a poppet which is disposed inside said poppet-containing chamber, said poppet being capable of moving backward to a backward position towards said opening and forward to a forward position towards said fluid passage, said poppet having a front piece with an externally facing contact surface and surrounding a spring-containing chamber, said contact surface being adapted to contact a seat formed in said fluid passage between said inlet side and said outlet side when said poppet is at said forward position and to thereby block a fluid flow between said inlet side and said outlet side, said contact surface being adapted to be separated from said seat when said poppet is at said backward position, said poppet having a liquid inlet connecting said spring-containing chamber and said outlet side, said poppet having a back end surface which is adapted to contact a back wall at said opening by leaving a groove between said back end surface and said back wall when said poppet is at said backward position and said back end surface is in contact with said back wall; and



Description
BACKGROUND OF THE INVENTION

This invention relates to fluid control valves incorporating an improved check valve for forming a multi-directional control valve which may be used in industrial vehicles such as power shovels, as well as transporting machines such as forklifts.

A multi-directional control valve with a layered structure, formed by combining fluid control valves of similar kinds with their outer walls contacting each other, is a versatile machine part, although a drain is left on the mutually contacting surface, because no connecting parts are required and this reduces the cost, because they can be made compact and also because individual fluid control valves can be combined in many different manners. A prior art fluid control valve, which can thus be used to form a multi-directional control valve of a layered structure, will be described first with reference to FIGS. 3-7.

FIG. 3 shows schematically a multi-directional control valve of a layered structure incorporating prior art fluid control valves fb, which are 4-port switch valves of the slide-spool type (provided with a so-called slidable spool), each having a high-pressure port 1 connected to a high-pressure source P and containing a prior art load check valve 8', a tank port 2 connected to a low-pressure region T, a center bypass 3 which connects the high-pressure port 1 and the tank port 2, and a pair of actuator ports 4, 5 connected to actuators A (with load symbolically indicated by letters W). For convenience, the portion of the high-pressure port 1 on the side of the load check valve 8' towards the center bypass 3 will be referred to as "the inlet side" 1a and the portion thereof on the opposite side of the load check valve 8' as "the outlet side" 1b.
 
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