Superconducting magnetic apparatus

US9234692B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9234692-B2
Application numberUS-81490610-A
CountryUS
Kind codeB2
Filing dateJun 14, 2010
Priority dateJun 15, 2009
Publication dateJan 12, 2016
Grant dateJan 12, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

According to one embodiment, there is provided a superconducting magnetic apparatus that conductively cools a superconducting coil contained in a vacuum container with a cryogenic refrigerator. The superconducting magnetic apparatus includes a thermal conductor thermally connecting a cooling stage of the cryogenic refrigerator to the superconducting coil, a radiation blocking layer provided around the superconducting coil, and a coil supporting body supporting the superconducting coil by partial or entire contact with a surface of the superconducting coil.

First claim

Opening claim text (preview).

What is claimed is: 1. A superconducting magnetic apparatus that conductively cools a superconducting coil contained in a vacuum container with a cryogenic refrigerator having a sole cooling stage, comprising: a thermal conductor integrally and thermally connecting the sole cooling stage of the cryogenic refrigerator to the superconducting coil; a radiation blocking layer provided to cover whole surroundings of the superconducting coil; and a coil supporting body supporting the superconducting coil by partial or entire contact with a surface of the superconducting coil, the coil supporting body being provided between the superconducting coil and the radiation blocking layer, the coil supporting body functioning as a heat insulator, wherein the superconducting coil, the coil supporting body and the radiation blocking layer are each independently and thermally connected to the sole cooling stage of the cryogenic refrigerator via connection with the thermal conductor, and wherein the coil supporting body surrounds the superconducting coil and is provided in a space between the superconducting coil and the radiation blocking layer, and the superconducting coil and the radiation blocking layer are integrally connected by containing the coil supporting body therebetween to form a single unit. 2. The superconducting magnetic apparatus of claim 1 , wherein the superconducting coil and the radiation blocking layer are separated by the coil supporting body. 3. The superconducting magnetic apparatus of claim 2 , wherein the integral connections are implemented using at least one of adhesion by resin, impregnation, pressure welding, vapor deposition, screwing and concave-convex fitting. 4. The superconducting magnetic apparatus of claim 1 , wherein the thermal conductor includes: a first heat transfer member integrally and thermally connecting the sole cooling stage of the cryogenic refrigerator to the superconducting coil, and a second heat transfer member integrally and thermally connecting the sole cooling stage of the cryogenic refrigerator to the radiation blocking layer, wherein a thermal resistance of the first heat transfer member is lower than that of the second heat transfer member. 5. The superconducting magnetic apparatus of claim 4 , wherein the cryogenic refrigerator is a GM cryogenic refrigerator or a pulse tube-type cryogenic refrigerator, which has the sole cooling stage. 6. The superconducting magnetic apparatus of claim 1 , wherein the coil supporting body supports the superconducting coil by partial contact with the surface of the superconducting coil, and a support portion of the coil supporting body supports the superconducting coil in an area which excludes a part where a load factor of the superconducting coil is the highest. 7. The superconducting magnetic apparatus of claim 1 , wherein the coil supporting body is made of a hollow structure having a hollow portion. 8. The superconducting magnetic apparatus of claim 1 , wherein the thermal conductor and the radiation blocking layer have slits that cut across an eddy current loop, which occurs due to a change in an external magnetic field. 9. The superconducting magnetic apparatus of claim 1 , wherein the radiation blocking layer is made of aluminum or a composite material formed by combining aluminum and fiber-reinforced plastic in a thickness direction, and the purity of aluminum used for the radiation blocking layer is at least 99%.

Assignees

Inventors

Classifications

  • F25D19/006Primary

    Thermal coupling structure or interface · CPC title

  • Cooling · CPC title

  • Arrangement or mounting of refrigeration units with respect to devices {or objects to be refrigerated, e.g. infrared detectors} · CPC title

  • with several cooling stages · CPC title

  • Means for cooling of the RF coils, e.g. a refrigerator or a cooling vessel specially adapted for housing an RF coil · CPC title

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Frequently asked questions

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What does patent US9234692B2 cover?
According to one embodiment, there is provided a superconducting magnetic apparatus that conductively cools a superconducting coil contained in a vacuum container with a cryogenic refrigerator. The superconducting magnetic apparatus includes a thermal conductor thermally connecting a cooling stage of the cryogenic refrigerator to the superconducting coil, a radiation blocking layer provided aro…
Who is the assignee on this patent?
Koyanagi Kei, Tosaka Taizo, Shimonosono Tsutomu, and 3 more
What technology area does this patent fall under?
Primary CPC classification F25D19/006. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Jan 12 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).