Low operating power, fast-response servovalve

5687759
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Inventors

Tan, Jinglu

Application #

628021

Filed

Apr-4-1996

Published

Nov-18-1997

Current US Class

137/486
137/487.5
137/489
137/492.5
251/129.18

International Classes

F16K 031/12

Field of Search

251/30.02 251/45 251/129.18 137/489 137/487.5 137/486 137/492.5 335/273 335/274 335/258

Assignee

The Curators of the University of Missouri (Columbia, MO)

Examiners

Ferensic; Denise L.

Attorney, Agent or Firm

Hovey, Williams, Timmons & Collins

US Patent References

4911401   Valve having impr...
4961441   Method and system...
4967996   Pilot type controlled...
5017099   Fluid regulator valve
5213303   Solenoid actuated v...

Referenced by:

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Citation

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Abstract
A servovalve includes a casing presenting an inlet and an outlet, and a primary valve supported on the casing and including a valve plug that is movable between a closed position blocking flow through the casing, and a plurality of open positions in which the valve plug presents a restriction of variable size for varying the flow. A diaphragm supports the valve plug and includes a first side proximal to the plug and a second side remote from the plug. A control chamber is provided on the first side of the diaphragm, and is connected to the inlet by a pilot inlet passage and to the outlet by a pilot outlet passage. A pilot valve controls the flow of fluid through the pilot outlet passage, and includes a control plug that is movable between a closed position in which the control plug blocks the pilot outlet passage, and a plurality of open positions in which the control plug presents a restriction of variable size within the pilot outlet passage for varying the flow between the control chamber and the outlet. A solenoid moves the control plug between the closed and open positions, and includes an electromagnetic coil, an axially shiftable core on which the control plug is supposed, and a spring assembly for supposing the core within the coil so that the position of the core relative to the coil is established by the force exerted on the core by the electromagnetic field around the coil acting in opposition to the spring assembly.
 
Claims
What is claimed is:

1. A servovalve for controlling fluid flow in a fluid handling system, the servovalve comprising:

a casing presenting an inlet and an outlet, and including a partition having an opening that permits fluid communication between the inlet and outlet;

a primary valve supported on the casing and including

a valve plug movable between a seated position in which the valve plug blocks the opening, and a plurality of open positions in which the valve plug presents a restriction of variable size for varying the flow between the inlet and the outlet, and

a diaphragm supporting the valve plug and including a first side remote from the partition and a second side proximal to the partition;



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention relates generally to valves, and more particularly to servovalves for automatically managing flow in a fluid handling system in response to sensed flow conditions.

2. Discussion of the Prior Art

It is known to provide a fluid handling system including a servovalve, a controller for supplying a control signal to the servovalve, an input mechanism for setting a desired flow condition value that is to be maintained by the servovalve, and a sensor for sensing the actual flow condition downstream of the servovalve. Such controllers typically include a means for comparing the sensed condition and the set condition to adjust the control signal supplied to the servovalve to compensate for the difference between the actual and the desired conditions.

Known servovalves include a valve for controlling the flow of fluid through the servovalve, and an actuator for positioning the valve in a continuous or stepwise fashion. Conventional actuators include fluid cylinders, diaphragms, electromagnetic coils or solenoids, and various electrical motors such as DC, AC or stepper motors. Such actuators are often powered by pressurized fluid, vacuum or pressure, or electrical sources.
 
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