Load responsive fluid control valves

4058140
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Inventors

Budzich, Tadeusz

Application #

717758

Filed

Aug-25-1976

Published

Nov-15-1977

Current US Class

091/421
091/436
091/446
137/596.1
137/596.13

International Classes

F15B 013/08

Field of Search

137/596.1 137/596.13 137/596.12 91/421 91/436 91/446

Examiners

Cohan; Alan

US Patent References

3951162   Control valve with f...
3984979   Load responsive flu...

Referenced by:

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Citation

Cite This Patent

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Abstract
A load responsive direction and flow control valve for use in fluid power load responsive system. The valve maintains a selected constant flow level for control of both positive and negative loads, irrespective of the change in the load magnitude or change in the fluid pressure, supplied to the valve. When controlling positive or negative loads the valve maintains a constant pressure differential across a flow control metering orifice utilizing a single control slide member, first by throttling fluid entering the inlet chamber and then by throttling the fluid leaving the outlet chamber. The valve may be used with fixed displacement pumps, fixed displacement pumps equipped with differential pressure relief valves, with variable pumps equipped with pressure compensators and variable pumps equipped with differential pressure compensators.
 
Claims
What is claimed is:

1. A valve assembly comprising a housing having a fluid inlet chamber, a fluid supply chamber, first and second fluid load chambers, a fluid outlet chamber, and fluid exhaust means, first valve means for selectively interconnecting said fluid load chambers with said fluid supply chamber and said fluid outlet chamber, variable fluid metering orifice means responsive to movement of said first valve means between said outlet chamber and said exhaust means, second valve means responsive to pressure upstream of said variable orifice means having positive load throttling means and isolating means between said inlet chamber and said supply chamber, said positive load throttling means operable to maintain pressure upstream of said variable orifice means at a low relatively constant preselected pressure level when one of said load chambers is connected to said outlet chamber by said first valve means and said load chamber is subjected to pressure not higher than said low relatively constant preselected pressure level, said isolating means operable to isolate said inlet chamber from said supply chamber when one of said load chambers is connected to said outlet chamber by said first valve means and said load chamber is subjected to pressure higher than said low relatively constant preselected pressure level, and fluid replenishing means operable to interconnect for fluid flow said supply chamber and said exhaust means when said isolating means isolates said inlet chamber from said supply chamber.



Description
BACKGROUND OF THE INVENTION

This invention relates generally to load responsive fluid control valves and to fluid power systems incorporating such valves which systems are supplied by a single fixed or variable displacement pump. Such control valves are equipped with an automatic load responsive control, and can be used in a multiple load system in which a plurality of loads are individually controlled under positive and negative load conditions by separate control valves.

In more particular aspects this invention relates to direction and flow control valves capable of controlling simultaneously a number of loads under both positive and negative conditions.

Closed center load responsive fluid control valves are very desirable for a number of reasons. They permit load control with reduced power losses, and therefore increased system efficiency; and when controlling one load at a time they provide a feature of flow control, irrespective of the variation in the magnitude of the load. Normally such valves include a load responsive control which automatically maintains the pump discharge pressure at a level higher, by a constant pressure differential, than the pressure required to sustain the load. A variable orifice, introduced between pump and load, varies the flow supplied to the load, each orifice area corresponding to a different flow level, which is maintained constant, irrespective of variation in the magnitude of the load. The application of such a system is, however limited by several basic system disadvantages.