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    • 1. 发明授权
    • Oxide superconductor current lead and method of manufacturing the same, and superconducting system
    • 氧化物超导体电流引线及其制造方法及超导体系
    • US07394024B2
    • 2008-07-01
    • US10771381
    • 2004-02-05
    • Shuichi KohayashiKazuyuki UemuraShigeo NagayaNaoji Kashima
    • Shuichi KohayashiKazuyuki UemuraShigeo NagayaNaoji Kashima
    • H01B12/00
    • H01R4/68Y10T29/49014
    • An oxide superconductor current lead in which generation of Joule heat at joint portions with a system side conductor and a power supply side conductor is reduced with use of an oxide superconductor with less heat penetration into a super conducting equipment system is provided. A columnar oxide superconductor molten bodies (interelectrode superconductor 260, in-electrode superconductors 280a and 280b) are produced, the in-electrode superconductor 280a and a left end portion of the interelectrode superconductor 260 are placed into a power supply side metallic electrode 210, and the in-electrode superconductor 280b and a right end portion of the interelectrode superconductor 260 are similarly placed in a system side metallic electrode 211, then degassed joining metal is used to join them to form an oxide superconductor current lead 201, a power supply side conductor 5 from a power supply is joined to the power supply side metallic electrode 210, and a system side conductor 202 from a superconducting system side is joined to the system side metallic electrode 211 with use of respective clamps 203a and 203b.
    • 提供了一种氧化物超导体电流引线,其中使用具有较少热渗透到超导设备系统中的氧化物超导体来减小与系统侧导体和电源侧导体的接合部处的焦耳热的产生。 制造柱状氧化物超导体熔融体(电​​极间超导体260,电极内超导体280a,280b),将电极内超导体280a和电极间超导体260的左端部配置在电源侧金属电极 210,并且电极内超导体280b和电极间超导体260的右端部类似地放置在系统侧金属电极211中,然后使用脱气的接合金属来连接它们以形成氧化物超导体电流引线201, 来自电源的电源侧导体5接合到电源侧金属电极210,并且使用相应的夹具203a和203b将来自超导系统侧的系统侧导体202接合到系统侧金属电极211 。