Pressure control valve arrangement

4488574
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Inventors

Bartholomaus, Reiner

Application #

405101

Filed

Aug-4-1982

Published

Dec-18-1984

Current US Class

137/487.5
137/625.65
137/625.68
251/325
338/42

International Classes

G05D 016/20

Field of Search

137/487.5 137/625.65 137/625.68 251/325 200/81.9 338/42

Assignee

Mannesman Rexroth GmbH (Lohr, DE)

Examiners

Michalsky; Gerald A.

Attorney, Agent or Firm

Striker; Michael J.

US Patent References

4051451   Beam type transdu...
4133511   Electro-hydraulic r...
4318333   Bidirectional, multi...
4413648   Hydraulic valves

Referenced by:

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Citation

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Abstract
A pressure control valve arrangement includes a control slide valve body which is slidably accommodated in a central bore of a valve housing. The control slide valve body is acted upon at one of its axial sides by the controlled pressure, and at its other axial side by a tappet of a proportional electromagnet. The proportional magnet has a magnet housing which is rigidly connected to the valve housing. To provide a pressure control valve arrangement in which the accuracy of the pressure control is not influenced by disturbing factors, a pressure indicator is accommodated in the magnet housing; at least the pressure-responsive member of the pressure indicator is acted upon by the controlled pressure, which is supplied thereto through a connecting bore in the magnet housing and a part of the central bore of the valve housing in which the controlled pressure prevails. A connecting line of the pressure indicator is lead to the exterior of the magnet and valve housings for derivation of the measured value therefrom. The measured value may then be compared with a reference value, and the result of the comparison may be used for controlling the coil of the proportional magnet, possibly after amplification.
 
Claims
I claim:

1. A pressure control valve arrangement, comprising a valve housing bounding a bore centered on an axis; a slide valve axially displaceable in said bore and having two axial end faces one of which delimits a controlled pressure compartment in said bore; a magnet housing rigid with said valve housing; a proportional magnet accommodated in said magnet housing and including a tappet magnetically displaceable in the axial directions of said bore and acting on the other of said axial end faces of said slide valve; a pressure indicator received in said magnet housing at the opposite axial side of said proportional magnet from said slide valve, including a pressure-responsive member, and operative for generating a pressure-indicative signal; means for admitting the pressure prevailing in said controlled pressure compartment of said bore through said proportional magnet at least to said pressure-responsive member of said pressure indicator to act thereon and to cause said pressure indicator to generate a pressure-indicative signal; and at least one connecting line commencing at said pressure indicator and having a terminal portion situated externally of said housings for furnishing said pressure-indicative signal.



Description
BACKGROUND OF THE INVENTION

The present invention relates to pressure control valve arrangements in general, and more particularly to pressure control valve arrangements in which an electromagnet is used for controlling the operation of the valve arrangement proper.

There are already known various constructions of pressure control valve arrangements in which a slide valve is received in a central bore of a valve housing for axial sliding therein, wherein the controlled pressure acts on the slide valve at its control side and in which the slide valve is acted upon at its opposite side by a tappet of a proportional magnet accommodated in a magnet housing which is rigidly connected with the valve housing.

It is also known to move the control slide valve of a pressure regulating or controlling valve by means of a tappet of a reciprocatory magnet which is constructed as a proportional magnet against the force of a spring, wherein the magnet force acts directly or indirectly via a spring on the control slide valve which is to control the fluid flowing through the arrangement. The pressure being controlled acts in the conventional constructions oppositely to the magnet force. The control accuracy of this conventional control valve arrangement is independent on the pressure of the fluid being controlled; however, it is dependent on the magnetic hysteresis, temperature, friction, and the like. This, of course, is very disadvantageous.
 
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