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Magnetic field processing to enhance critical current densities of MgB2 superconductors

机译:磁场处理可增强MgB2超导体的临界电流密度

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摘要

A magnetic field of up to 12T was applied during the sintering process of pure MgB2 and carbon nanotube(CNT)dopedMgB2wires. The authors have demonstrated that magnetic field processing results in grain refinement, homogeneity, and enhancement in Jc(H) and Hirr. The extent of improvement in Jc increases with increasing field. The Jc for a 10T field processed CNTdoped sample increases by a factor of 3 at 10K and 8T and at 20K and 5T, respectively. Hirr for the 10T field processed CNTdoped sample reached 9T at 20K, which exceeded the best value of SiC dopedMgB2 at 20K. Magnetic field processing reduces the resistivity in CNTdopedMgB2, straightens the entangled CNTs, and improves the adherence between CNTs and the MgB2 matrix.
机译:在纯MgB2和碳纳米管掺杂的MgB2线的烧结过程中施加了高达12T的磁场。作者已经证明,磁场处理可导致晶粒细化,均匀性和Jc(H)和Hirr增强。 Jc的改进程度随场的增加而增加。 10T现场处理的CNT掺杂样品的Jc在10K和8T以及20K和5T分别增加了3倍。 10T现场处理的CNT掺杂样品的Hirr在20K时达到9T,超过了SiC掺杂的MgB2在20K时的最佳值。磁场处理可降低CNT掺杂的MgB2中的电阻率,拉直缠结的CNT,并改善CNT与MgB2基质之间的附着力。

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