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Strain and grain connectivity in Bi2223/Ag superconducting tapes

机译:Bi2223 / ag超导带中的应变和晶粒连接

摘要

The critical current reduction in silver-sheathed (Bi,Pb)2 Sr2Ca2Cu3O10 superconducting tapes (Bi2223/Ag) is investigated when loaded with uni-axial strains in combination with a magnetic field perpendicular to the tape surface. The number and quality of the grain-to-grain connections and the alignment of the superconducting cores mainly determine the critical current in Bi2223/Ag tapes. It is assumed that the transport current flows simultaneously through two current carrying paths in the tape: one through the network of Josephson junctions and the other is through the well-connected grains. The model describes well the magnetic field dependence of the critical current at various strains. A detailed analysis has shown that strain deteriorates grain connectivity, induces cracking and hence changes the current carrying path. Furthermore, strain may introduce new defects inside the grains along the strong-link current path and increase intra-granular pinning strength
机译:当单轴应变和垂直于胶带表面的磁场共同作用时,研究了银包覆的(Bi,Pb)2 Sr2Ca2Cu3O10超导胶带(Bi2223 / Ag)的临界电流降低。晶粒间连接的数量和质量以及超导芯的排列主要决定了Bi2223 / Ag胶带中的临界电流。假设传输电流同时流过带子中的两个载流路径:一个流过约瑟夫森结的网络,另一个流过连接良好的晶粒。该模型很好地描述了各种应变下临界电流的磁场依赖性。详细的分析表明,应变会破坏晶粒的连通性,引起开裂,从而改变载流路径。此外,应变可能会沿着强链电流路径在晶粒内部引入新的缺陷,并增加晶粒内钉扎强度

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