IP Library Granted Patent US 9,759,455
Granted Patent B2
US 9,759,455 · App. 14/226,188 · Granted Sep 12, 2017

Cryogenic refrigerator

Inventor: Koji Yamada (Tokyo, JP)
Assignee: SUMITOMO HEAVY INDUSTRIES, LTD.
F25B9/14F17C2227/0353F25B9/06F25B9/12
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Quick Facts
Patent No.
US 9,759,455
App. No.
14/226,188
Granted
Sep 12, 2017
Kind
B2
Abstract

A cryogenic refrigerator includes a compressor which compresses a working gas, a housing which includes a space which the working gas compressed by the compressor flows into and flows from, a cylinder of which an end is connected to the housing and which includes an expansion space at the other end, and a displacer which permits flowing of the working gas into and from the expansion space via a working gas channel provided in an inner portion of the displacer while reciprocating in an inner portion of the cylinder. The working gas flows through a pipe which communicates with the space and the working gas channel.

Claims (24)

1. A cryogenic refrigerator comprising:

a compressor which compresses a working gas;

a housing which includes a space which the working gas compressed by the compressor flows into and flows from;

a valve configured to switch flowing-in and flowing-out of the compressed working gas;

a gas channel that communicates with the valve and the space;

a cylinder of which a first end is connected to the housing and which includes an expansion space at a second end, which is opposite to the first end;

a displacer which permits flowing of the working gas into and from the expansion space via a working gas channel provided in an inner portion of the displacer while reciprocating in an inner portion of the cylinder; and

a drive shaft that extends in an axial direction, the drive shaft comprises a lower end connected to an upper end plate of the displacer at a center of the upper end plate in a radial direction perpendicular to the axial direction and an upper end facing an upper end of the housing, the drive shaft is configured to drive the displacer, wherein

the working gas is configured to flow through a pipe which communicates with the space and the working gas channel,

the pipe comprises one of a plurality of linear pipes located outside of the drive shaft in the radial direction, the one of the plurality of linear pipes protruding from the upper end plate of the displacer,

the space is a concave portion depressed from a lower end surface of the housing, and

an upper end of the one of the plurality of linear pipes is normally accommodated in the concave portion and a lower end of the one of the plurality of linear pipes is fixed to the upper end plate of the displacer.

2. A cryogenic refrigerator comprising:

a compressor which compresses a working gas;

a housing which includes a space which the working gas compressed by the compressor flows into and flows from;

a valve configured to switch flowing-in and flowing-out of the compressed working gas;

a gas channel that communicates with the valve and the space;

a cylinder of which a first end is connected to the housing and which includes an expansion space at a second end, which is opposite to the first end;

a displacer that permits flowing of the working gas into and from the expansion space via a working gas channel provided in an inner portion of the displacer while reciprocating in an inner portion of the cylinder; and

a drive shaft that comprises a lower end connected to an upper end of the displacer and an upper end facing an upper end of the housing and drives the displacer, wherein

the working gas is configured to flow through a pipe which communicates with the space and the working gas channel,

the pipe is integrally provided to the drive shaft, an upper end of the pipe opens to the space at the upper end of the drive shaft, and a lower end of the pipe opens to the working gas channel at the lower end of the drive shaft,

the drive shaft includes a yoke plate having an oblong window, an upper drive shaft extending upward from the yoke plate and a lower drive shaft extending downward from the yoke plate, and

the pipe includes an upper pipe which penetrates the upper drive shaft, a bypass pipe which bypasses the oblong window, and a lower pipe which penetrates the lower drive shaft.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2014
From: YAMADA, KOJI
To: SUMITOMO HEAVY INDUSTRIES, LTD.
Reel/Frame 032532/0283 →
Priority Claims (1)
JP 2013-070464 · Mar 28, 2013 · national
Continuity (1)
Related Publication 20140290277A1 · Oct 2, 2014