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A Structure Design of HTS Current Leads With Respect to the Structure of Coated Conductor and the Current Terminal

机译:高温超导电流引线关于涂层导体和电流端子的结构设计

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摘要

High temperature superconductor (HTS) is a promising material as current leads for large current applications, because it has zero resistance. However, a single HTS tape has limitation on the capacity of current rating due to the critical current of the HTS tape. Therefore, stacking or parallel structure of the HTS tapes is inevitable in high temperature superconducting current leads (HTSCLs) for large current application. In this paper, several stacking methods with respect to the shape of the current terminal and the structure of the HTS tape are studied and the characteristics of the stacked samples are investigated by experimental analysis. The critical currents of the HTS modules were measured and the conductive heat leakage of a stabilizer layer was calculated. From this analysis, the characteristics of the current distribution and decrease in the critical current of HTS modules with respect to the shape of the current terminal were obtained. Based on the results, the required stacking number of the HTS tapes for certain operating current HTSCLs can be calculated.
机译:高温超导体(HTS)具有零电阻,因此是大电流应用中作为电流引线的有前途的材料。但是,由于HTS磁带的临界电流,单个HTS磁带在额定电流容量上存在限制。因此,在大电流应用的高温超导电流引线(HTSCL)中,HTS带的堆叠或平行结构是不可避免的。本文针对电流端子的形状和HTS胶带的结构,研究了几种堆叠方法,并通过实验分析研究了堆叠样品的特性。测量了HTS模块的临界电流,并计算了稳定剂层的传导热泄漏。通过该分析,获得了电流分布的特性以及相对于电流端子形状的HTS模块的临界电流的减小。根据结果​​,可以计算出某些当前运行的HTSCL所需的HTS磁带堆叠数量。

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