Rare-earth regenerator material particles, and group of rare-earth regenerator material particles, refrigerator and measuring apparatus using the same, and method for manufacturing the same
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
G01R-033/035
F25B-009/14
B23P-015/26
G01R-033/38
G01R-033/3815
B22F-009/10
C09K-005/14
C09K-005/04
출원번호
US-0636016
(2017-06-28)
등록번호
US-10024583
(2018-07-17)
우선권정보
JP-2009-194832 (2009-08-25)
발명자
/ 주소
Yamada, Katsuhiko
Fuse, Keiichi
출원인 / 주소
KABUSHIKI KAISHA TOSHIBA
대리인 / 주소
Oblon, McClelland, Maier & Neustadt, L.L.P.
인용정보
피인용 횟수 :
0인용 특허 :
8
초록▼
Provided is a group of rare-earth regenerator material particles having an average particle size of 0.01 to 3 mm, wherein the proportion of particles having a ratio of a long diameter to a short diameter of 2 or less is 90% or more by number, and the proportion of particles having a depressed portio
Provided is a group of rare-earth regenerator material particles having an average particle size of 0.01 to 3 mm, wherein the proportion of particles having a ratio of a long diameter to a short diameter of 2 or less is 90% or more by number, and the proportion of particles having a depressed portion having a length of 1/10 to ½ of a circumferential length on a particle surface is 30% or more by number. By forming the depressed portion on the surface of the regenerator material particles, it is possible to increase permeability of an operating medium gas and a contact surface area with the operating medium gas.
대표청구항▼
1. A method of manufacturing a refrigerator for accumulating an extremely low temperature cold, comprising the steps of: providing a vacuum chamber;providing an external cylinder so as to be disposed in the vacuum chamber, the external cylinder enclosing an inner space;providing at least one regener
1. A method of manufacturing a refrigerator for accumulating an extremely low temperature cold, comprising the steps of: providing a vacuum chamber;providing an external cylinder so as to be disposed in the vacuum chamber, the external cylinder enclosing an inner space;providing at least one regenerator container for accumulating cold which is arranged at the inner space inside of the external cylinder;installing a seal ring between the external cylinder and the regenerator container;forming an expanding chamber between the external cylinder and the regenerator container;combining a compressor for compressing a cooling medium gas; andpacking a group of regenerator material particles in the regenerator container;wherein the group of regenerator material particles have an average particle size of 0.045 to 3 mm,wherein a proportion of particles having a ratio of a long diameter to a short diameter of 2 or less is 90% or more by number, a proportion of particles having a depressed portion having a length of 1/10 to ½ of a particle circumferential length of a particle on a particle surface is 30% or more by number and wherein the depressed portion has depth of 1/10 or less of a particle diameter. 2. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 1, wherein two or more stages of regenerator material-filled zones are formed through a mesh material in at least one regenerator container, and the group of regenerator material particles are packed in at least one stage of the regenerator material-filled zones. 3. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 2, wherein metal mesh-like members as the mesh material are packed in at least one stage of the regenerator material-filled zones. 4. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 3, wherein the mesh material comprising a metal mesh-like member composed of copper or a copper alloy is packed. 5. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 3, wherein the metal mesh-like members are packed in a regenerator material-filled zone which is located at a higher temperature side than the regenerator material-filled zone into which the group of regenerator material particles are packed. 6. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 1, wherein two or more regenerator containers are connected. 7. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 6, wherein the method further comprises the step of packing the mesh material comprising a metal mesh-like member composed of copper or a copper alloy. 8. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 1, wherein the refrigerator is used for forming an extremely low temperature cold zone having a temperature of lower than 10K. 9. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 1, wherein the group of regenerator material particles comprises at least one element selected form a group consisting of Y (yttrium), La (lanthanum), cerium (Ce), praseodymium (Pr), neodymium (Nd), promethium (Pm), samarium (Sm), europium (Eu), gadolinium (Gd), terbium (Tb), dysprosium (Dy), holmium (Ho), erbium (Er), thulium (Tm), and ytterbium (Yb). 10. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 1, wherein the group of regenerator material particles comprise at least one substance selected form a group consisting of a rare-earth elemental of single substance, and alloy with Cu (including an intermetallic compound), a rare-earth with Ni (including an intermetallic compound), a rare-earth oxide (including a rare-earth complex oxide), and a rare-earth sulfide. 11. The method of manufacturing a refrigerator for accumulating an extremely low temperature cold, according to claim 1, wherein the group of regenerator material particles comprise at least one substance selected from the group consisting of Nd, Er3Ni, ErNi, HoCu2 Gd2O3, and Gd2O2S. 12. A method of manufacturing a superconducting magnet provided with a refrigerator for accumulating an extremely low temperature cold, wherein the refrigerator is manufactured through the method according to claim 1. 13. A method of manufacturing a measuring apparatus provided with a refrigerator for accumulating an extremely low temperature cold, wherein the refrigerator is manufactured through the method according to claim 1. 14. A method of manufacturing an MRI provided with a refrigerator for accumulating an extremely low temperature cold, wherein the refrigerator is manufactured through the method according to claim 1. 15. A method of manufacturing a NMR provided with a refrigerator for accumulating an extremely low temperature cold, wherein the refrigerator is manufactured through the method according to claim 1. 16. A method of manufacturing a cryopump provided with a refrigerator for accumulating an extremely low temperature cold, wherein the refrigerator is manufactured through the method according to claim 1.
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이 특허에 인용된 특허 (8)
Arai Tomohisa (Yokohama JPX) Sori Naoyuki (Yokohama JPX) Sahashi Masashi (Yokohama JPX) Tokai Yoichi (Urayasu JPX), Cold accumulating material and method of manufacturing the same.
Okamura Masami,JPX ; Sori Naoyuki,JPX, Regenerator material for extremely low temperatures and regenerator for extremely low temperatures using the same.
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