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Contact resistance characteristics of high temperature superconducting bulk-III

机译:高温超导本体Ⅲ的接触电阻特性

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摘要

A persistent current switch (PCS) is used for superconducting applications, such as superconducting magnetic energy storage (SMES) system. We have proposed a mechanical switch of high-temperature superconductor (HTS) as a mechanical PCS. In the previous paper, the sample surfaces were carefully polished and deposited with metals. As a result, the transfer current exceeded 30 A, and the contact resistance reduced to 6 /spl mu//spl Omega/ at constant load 500 N. In This work, the experiment result when depositing metal thickly, and the relation between contact resistance and load were reported. Reduction of contact resistance and load was tried by depositing metals. Consequently, contact resistance could be reduced. When depositing indium, the increase of contact resistance by load reduction could be suppressed. Additionally, based on the experimental results and surface observation, we analyzed the current density and temperature distribution of the switch with finite element method (FEM). This analysis result may lead to the elucidation of a contact mechanism.
机译:持久的电流开关(PC)用于超导应用,例如超导磁能存储(SMES)系统。我们提出了作为机械PC的高温超导体(HTS)的机械开关。在前一篇文章中,小心地抛光样品表面并用金属沉积。结果,转移电流超过30a,并且接触电阻减少到6 / spl mu // SPLω/恒定负载500n.在这项工作中,在厚厚的金属沉积金属时,实验导致实验结果,以及接触电阻之间的关系并报告了负荷。通过沉积金属试验接触电阻和载荷的降低。因此,可以降低接触电阻。沉积铟时,可以抑制通过负载减少的接触电阻的增加。另外,基于实验结果和表面观察,我们分析了具有有限元方法(FEM)的电流密度和温度分布。该分析结果可能导致接触机构的阐明。

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