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Comparison between Bi-2223 tape and RE-123 coated conductor from the view point of current transport properties influencing thermal stability

机译:从电流传输特性影响热稳定性的角度比较Bi-2223胶带和RE-123涂层导体

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We have investigated flux flow dissipation in typical two kinds of HTS tapes, i.e., a Bi-2223 multi-filamentary tape and a RE-123 coated conductor (CC) from the view point of heat load under over current conditions. Based on systematic measurements on current-voltage characteristics, the nonlinear flux flow dissipation has been described analytically by taking into account current sharing in metallic sheath or stabilization layer. Flux flow dissipation in the RE-123 CC shows much steeper temperature dependence than that of the Bi-2223 tape. As a result, attainable cooling power becomes smaller in the RE-123 CC in comparison with that of Bi-2223 tape even if the same cooling condition. In other word, acceptable temperature rise in the RE-123 CC is small at over current condition, whereas moderate temperature dependence in the Bi-2223 tape allows stable operation even if the bias current exceeds the critical current. Influence of spatial inhomogeneity in the both HTS tapes has also been investigated. Longitudinal variation of local critical current, I-c, and its statistical behavior have been characterized by use of reel-to-reel scanning Hall probe microscopy. It has been found that the flux flow dissipation is possibly localized more than one order higher than that of the average value due to discrete local I-c drops. (C) 2016 Published by Elsevier Ltd.
机译:从过电流条件下的热负荷的角度出发,我们研究了典型的两种HTS胶带(即Bi-2223复丝胶带和RE-123涂层导体(CC))的通量流耗散。基于对电流-电压特性的系统测量,已经通过考虑金属护套或稳定层中的电流共享来分析地描述了非线性通量流耗散。与Bi-2223胶带相比,RE-123 CC中的助焊剂流耗散显示出更严格的温度依赖性。结果,即使在相同的冷却条件下,与Bi-2223磁带相比,RE-123 CC可获得的冷却功率也变小。换句话说,在过电流条件下,RE-123 CC中可接受的温度上升很小,而Bi-2223胶带中适度的温度依赖性使得即使偏置电流超过临界电流也能稳定运行。还研究了两个HTS磁带中空间不均匀性的影响。局部临界电流I-c的纵向变化及其统计行为已通过使用卷对卷扫描霍尔探针显微镜进行了表征。已经发现,由于离散的局部I-c下降,通量流耗散可能比平均值高出一倍以上。 (C)2016由Elsevier Ltd.出版

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