Claims
- 1. A connection structure for connecting first and second superconducting conductors, wherein:portions of first and second superconducting conductors to be connected are divided respectively into at least first and second tape-shaped superconducting wires, each of said at least first and second superconducting wires of said first and second superconducting conductors includes a filament assembly containing superconducting filaments, said first superconducting wire of said first superconducting conductor is aligned widthwise with said first superconducting wire of said second superconducting conductor and joined therewith to form a first joined body such that broad surfaces of the first wire of the first superconducting conductor and of the first wire of the second superconducting conductor are opposed to each other, said second superconducting wire of said first superconducting conductor is aligned widthwise with said second superconducting wire of said second superconducting conductor and joined therewith to form a second joined body such that broad surfaces of the second wire of the first superconducting conductor and of the second wire of the second superconducting conductor are opposed to each other, the broad surfaces of each of the at least first and second superconducting wires of the first and second joined bodies are aligned widthwise, and the first and second joined bodies are joined by a solder layer.
- 2. The connection structure claimed in claim 1, wherein said superconducting wires are metal coated.
- 3. The connection structure claimed in claim 2, wherein said metal comprises at least one metal selected from the group consisting of silver, gold, silver alloy and gold alloy.
- 4. The connection structure claimed in claim 1, wherein said superconducting wires comprise an oxide superconductor.
- 5. The connection structure claimed in claim 4, wherein said oxide superconductor comprises a bismuth oxide superconductor.
- 6. A connection structure for connecting first and second superconducting conductors, wherein:portions of first and second superconducting conductors to be connected are divided respectively into at least first and second tape-shaped superconducting wires, each of said at least first and second superconducting wires of said first and second superconducting conductors includes a filament assembly containing superconducting filaments, said first superconducting wire of said first superconducting conductor is aligned widthwise with said first superconducting wire of said second superconducting conductor and joined therewith to form a first joined body such that broad surfaces of the first wire of the first superconducting conductor and of the first wire of the second superconducting conductor are opposed to each other, said second superconducting wire of said first superconducting conductor is aligned widthwise with said second superconducting wire of said second superconducting conductor and joined therewith to form a second joined body such that broad surfaces of the second wire of the first superconducting conductor and of the second wire of the second superconducting conductor are opposed to each other, the broad surfaces of each of the at least first and second superconducting wires of the first and second joined bodies are aligned widthwise, and the first joined body is insulated from the second joined body.
- 7. The connection structure claimed in claim 6, wherein said superconducting wires are metal coated.
- 8. The connection structure claimed in claim 7, wherein said metal comprises at least one metal selected from the group consisting of silver, gold, silver alloy and gold alloy.
- 9. The connection structure claimed in claim 6, wherein said superconducting wires comprise an oxide superconductor.
- 10. The connection structure claimed in claim 9, wherein said oxide superconductor comprises a bismuth oxide superconductor.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8-117913 |
May 1996 |
JP |
|
Parent Case Info
This application is a continuation of U.S. patent application Ser. No. 08/846,170, filed Apr. 28, 1997.
US Referenced Citations (9)
Foreign Referenced Citations (7)
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Country |
0 501 394 |
Sep 1992 |
EP |
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Aug 1993 |
EP |
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Jul 1990 |
JP |
4-039875 |
Feb 1992 |
JP |
4-269471 |
Sep 1992 |
JP |
5-234626 |
Sep 1993 |
JP |
5-290947 |
Nov 1993 |
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Non-Patent Literature Citations (2)
Entry |
Superconductivity—Cryogenic Engineering Handbook (by Ohmsha, issued Nov. 30, 1993), pp. 913, 914. |
Applied Superconductivity (by Nikkan Kogyo Shimbun Ltd., first edition, issued Jul. 15, 1986), pp. 111, 112. |
Continuations (1)
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Number |
Date |
Country |
Parent |
08/846170 |
Apr 1997 |
US |
Child |
09/941104 |
|
US |