Ultra-low heat leak cryogenic valve

5158106
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Inventors

McIntosh, Glen E.

Application #

711629

Filed

Jun-6-1991

Published

Oct-27-1992

Current US Class

062/50.7
137/375
251/335.3
251/368

International Classes

F16L 007/00

Field of Search

251/335.1 251/335.2 251/335.3 251/368 137/375 62/50.7

Assignee

Saes Pure Gas, Inc. (San Luis Obispo, CA)

Examiners

Chambers; A. Michael

Attorney, Agent or Firm

McKown; Daniel C.

US Patent References

4171792   High pressure diap...
4462422   Bellows sealed stem...
4644969   Water control valve...
5000215   Bellows seal for val...

Referenced by:

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Citation

Cite This Patent

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Abstract
A cryogenic valve that uses conventional materials in unusual ways to achieve very low heat leak, excellent strength, pressure or vacuum integrity and modest manufacturing cost. Heat leak rates on the order of 0.5 watt have been obtained in a 1.5 inch valve. Such performance is made possible by the unique structure of the valve stem, of the bonnet extension, and of certain insulative spacers. The valve stem consists of a thin wall tube of wound glass filaments in an epoxy matrix. The bonnet extension consists of a thin wall stainless steel bellows wound with glass fibers in an epoxy matrix. The insulative spacers have a shape that results in a long tortuous conduction path when they are stacked inside the valve stem and in the space between the valve stem and the bonnet extension.
 
Claims
What is claimed is:

1. A bonnet extension that is leak-tight, that can support large axial and radial loads, and that minimizes heat transfer into a valve, comprising:

a metallic bellows having a corrugated outer surface;

a composite layer covering the corrugated outer surface of said metallic bellows and composed of high strength low thermal conductivity wound filaments embedded in an epoxy matrix.

2. The bonnet extension of claim 1 wherein said wound filaments are composed of a material selected from the group consisting of Kevlar, alumina, boron, carbon, quartz and glass.

3. The bonnet extension of claim 1 wherein said high strength low thermal conductivity wound filaments are composed of S-2 glass.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention is in the field of cryogenics and specifically relates to a valve for controlling the flow of cryogenic fluids. The valve uses unconventional materials in a design that results in the valve having very low heat leak, excellent strength, vacuum and pressure integrity, and modest manufacturing cost.

2. The Prior Art

In a low heat leak cryogenic valve, the manual operating handle or power operator is at room temperature. Either of these is connected to the valve sealing element or plug by a stem which is housed within a stationary sleeve called the bonnet extension. The bonnet extension is generally substantially larger in diameter than the stem in order to allow insertion and removal of the valve plug. The valve stem, bonnet extension, and annular space between them act as paths for the influx of heat. Likewise, the space within a tubular valve stem will allow heat to enter, both by radiation and by conduction.
 
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