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机构地区:[1]Applied Superconductivity Research Center, Tsinghua University, Beijing 100084 [2]Institute of Chemical Defense of the Chinese People's Liberation Army, Beijing 102205
出 处:《Chinese Physics Letters》2006年第4期964-966,共3页中国物理快报(英文版)
摘 要:Ag-Mg-V alloy is prepared and investigated to develop a new sheath alloy used for BSCCO tapes. Bi-2223 Ag/AgMgV and Bi-2223 AgMgV/AgMgV tapes are studied with the help of stress-strain measurement, optical microstructure and critical current Ic. The value of Ic at 77K and at magnetic field B = 0 is obtained to be 90A/cm^2 for the samples of Bi-2223 Ag/AgMgV tapes, which is higher than that of Bi-2223 AgMgV/AgMgV tapes (72A/cm^2). The resistance of AgMgV alloy, up to 0.37μΩ·cm at 77K, is higher than that of pure Ag (0.28μΩ·cm) after annealed at 840℃ for 4012, which is studied for reducing the ac loss. The values of the fracture strength and the maximum strain are 86 MPa and 0.50% for Bi-2223 Ag/AgMgV tapes and 108 MPa and 0.33% for Bi-2223 AgMgV/AgMgV tapes, respectively.Ag-Mg-V alloy is prepared and investigated to develop a new sheath alloy used for BSCCO tapes. Bi-2223 Ag/AgMgV and Bi-2223 AgMgV/AgMgV tapes are studied with the help of stress-strain measurement, optical microstructure and critical current Ic. The value of Ic at 77K and at magnetic field B = 0 is obtained to be 90A/cm^2 for the samples of Bi-2223 Ag/AgMgV tapes, which is higher than that of Bi-2223 AgMgV/AgMgV tapes (72A/cm^2). The resistance of AgMgV alloy, up to 0.37μΩ·cm at 77K, is higher than that of pure Ag (0.28μΩ·cm) after annealed at 840℃ for 4012, which is studied for reducing the ac loss. The values of the fracture strength and the maximum strain are 86 MPa and 0.50% for Bi-2223 Ag/AgMgV tapes and 108 MPa and 0.33% for Bi-2223 AgMgV/AgMgV tapes, respectively.
关 键 词:SUPERCONDUCTORS
分 类 号:TG111[金属学及工艺—物理冶金]
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