The invention relates to a gas regulating unit according to the preamble to claim 1.
Gas regulating units which are known from practice have a valve body, forming a gas inlet chamber and a gas outlet chamber, as well as a safety valve and a main gas valve. With the aid of the safety valve and the main gas valve, a gas flow from the gas inlet chamber into the gas outlet chamber is either allowed or shut off. The safety valve typically takes the form of a valve which is either open or closed. The main gas valve preferably takes the form of a modulating gas valve, with which the magnitude of the gas flow flowing from the gas inlet chamber into the gas outlet chamber can be adjusted.
In gas regulating valves which are known from practice, the valve basic body is made from metal, in particular from an aluminum alloy. Since the valve basic bodies have a complex contour or geometry, the manufacture of valve basic bodies from an aluminum alloy is laborious and expensive. There is therefore a need for gas regulating valves which can be made at lower cost.
The object of the invention is to provide an innovative gas regulating unit. This object is achieved by a gas regulating unit having the features of claim 1.
According to the invention, the valve basic body comprises at least three parts, namely at least one plastic core, which defines the gas inlet chamber and the gas outlet chamber, and at least two metallic shells, wherein a first metallic shell encloses the plastic core, at least in sections, on a top side and wherein a second metallic shell encloses the plastic core, at least in sections, on a bottom side, and wherein between one of these metallic shells and the plastic core there is positioned at least one diaphragm, which for the safety valve and/or the main gas valve respectively delimits a drive chamber, in which a servo pressure prevails.
The valve basic body of the gas regulating unit according to the invention comprises at least three parts, namely at least one plastic core and at least two metallic shells, which enclose the or each plastic core, at least in sections, in the region of the top side and the bottom side. The plastic core here provides the gas inlet chamber and the gas outlet chamber, a plastic core of this type being able to be produced at lower cost than valve basic bodies which are made of an aluminum alloy and are known from the prior art. The metallic shells primarily assume the function of protecting the plastic core from mechanical loads which act on the latter from the outside.
Preferred refinements of the invention emerge from the subclaims and the following description.
An illustrative embodiment of the invention is explained in greater detail below, without restriction hereto, with reference to the drawing. In the drawing:
In the shown illustrative embodiment, the valve basic body 11 of the gas regulating unit 10 according to the invention comprises three parts, namely a plastic core 12, a first metallic shell 13 and a second metallic shell 14. The plastic core 12 defines a gas inlet chamber and a gas outlet chamber of the gas regulating unit, wherein on the gas inlet chamber there is configured a connecting socket 16 for a gas supply line and on the gas outlet chamber there is configured a connecting socket 17 for a gas evacuation line.
The first metallic shell 13 encloses the plastic core 12, at least in sections, on a top side of the same.
The second metallic shell 14 encloses the plastic core 12, likewise at least in sections, on a bottom side of the same.
Between the plastic core 12 and the lower metallic shell 14 there is positioned a diaphragm 15, which at least for the main gas valve delimits a drive chamber, in which a servo pressure prevails. The diaphragm 15, which is positioned between the bottom side of the plastic core 12 and the second metallic shell 14 by which the plastic core 12 is enclosed on the bottom side, and the second metallic shell 14 jointly delimit at least one drive chamber, in which a servo pressure respectively prevails.
The metallic shells 13, 14, which enclose the plastic core 12 at least in sections, have connecting elements 20 for the actuators or operators 18, 19 of the safety valve and main gas valve, wherein the operators 18, 19 preferably take the form of magnets. In addition, a connecting element for the connection of a pressure regulator, by which a servo pressure can be adjusted, may also be present.
The metallic shells 13, 14 surround the connecting sockets 16, 17 of the plastic core 12. Fastening elements, by which the gas supply line can be fastened to the connecting socket 16 and the gas evacuation line can be fastened to the connecting socket 17, consequently engage on those sections of the metallic shells 13, 14 which enclose the connecting sockets 16, 17.
The plastic core 12 serves in particular to provide a gas inlet chamber and a gas outlet chamber of the gas regulating unit. The metallic shells 13, 14, which enclose the plastic core 12 at least in sections, stabilize the plastic core 12 and protect the same from mechanical loads which can act on the plastic core 12 from the outside. Fastening devices, by which the gas supply line and the gas evacuation line can be fastened to the connecting sockets 16, 17, thus engage on those sections of the metallic shells 13, 14 which enclose the connecting sockets 16, 17. The operators 18, 19, too, are fastened to the connecting elements 20 of the metallic shells 13, 14 or engage on the same. Mechanical forces are consequently absorbed by the metallic shells 13, 14, so that the plastic core 12 is essentially exposed only to loads induced by the gas flow.
The metallic shells 13, 14 which enclose the plastic core 12 on the top side and the bottom side additionally have connecting elements 21, at which the two metallic shells 13, 14 can be connected to each other.
Number | Date | Country | Kind |
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10 2008 027 796.7 | Jun 2008 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2009/003659 | 5/22/2009 | WO | 00 | 1/5/2011 |