发明授权
- 专利标题: TORSIONAL TEXTURING OF SUPERCONDUCTING OXIDE COMPOSITE ARTICLES
- 专利标题(中): 超导氧化物复合材料的扭转织构
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申请号: EP95933044.0申请日: 1995-09-08
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公开(公告)号: EP0780024B1公开(公告)日: 2002-02-27
- 发明人: CHRISTOPHERSON, Craig, John , RILEY, Gilbert, N., Jr. , SCUDIERE, John
- 申请人: AMERICAN SUPERCONDUCTOR CORPORATION
- 申请人地址: Two Technology Drive Westborough, MA 01581 US
- 专利权人: AMERICAN SUPERCONDUCTOR CORPORATION
- 当前专利权人: AMERICAN SUPERCONDUCTOR CORPORATION
- 当前专利权人地址: Two Technology Drive Westborough, MA 01581 US
- 代理机构: Kirkham, Nicholas Andrew
- 优先权: US302601 19940908
- 国际公布: WO9608045 19960314
- 主分类号: H01L39/24
- IPC分类号: H01L39/24
摘要:
A method of texturing a multifilamentary article having filaments comprising a desired oxide superconductor or its precursors by torsionally deforming the article is provided. The texturing is induced by applying a torsional strain which is at least about 0.3 and preferably at least about 0.6 at the surface of the article, but less than the strain which would cause failure of the composite. High performance multifilamentary superconducting composite articles having a plurality of low aspect ratio, twisted filaments with substantially uniform twist pitches in the range of about 1.00 inch to 0.01 inch (25 to 0.25 mm), each comprising a textured desired superconducting oxide material, may be obtained using this texturing method. If tighter twist pitches are desired, the article may be heat treated or annealed and the strain repeated as many times as necessary to obtain the desired twist pitch. It is preferred that the total strain applied per step should be sufficient to provide a twist pitch tighter than 5 times the diameter of the article, and twist pitches in the range of 1 to 5 times the diameter of the article are most preferred. The process may be used to make a high performance multifilamentary superconducting article, having a plurality of twisted filaments, wherein the degree of texturing varies substantially in proportion to the radial distance from the center of the article cross section, and is substantially radially homogeneous at any given cross section of the article. Round wires and other low aspect ratio multifilamentary articles are preferred forms. The invention is not dependent on the melting characteristics of the desired superconducting oxide. Desired oxide superconductors or precursors with micaceous or semi-micaceous structures are preferred. When used in connection with desired superconducting oxides which melt irreversibly, it provides multifilamentary articles that exhibit high DC performance characteristics and AC performance markedly superior to any currently available for these materials. In a preferred embodiment, the desired superconducting oxide material is BSCCO 2223.
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