Evaluation of the Normal-zone Initiation and Propagation Characteristics of YBCO Tape

A. Ishiyama, M. Yanai, H. Ueda, Y. Iijima, T. Saitoh, Y. Shiohara
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Abstract

There are great expectations for YBCO tape as a “next-generation superconductor tape” because the Jc characteristic has better magnetic field dependence at high temperatures and/or in a high magnetic field. It is important to consider stability for superconducting applications; however, the stability criterion for YBCO has not yet been distinctly established. Thus, for the sake of establishing stability criterion for YBCO, we examined the normal-zone initiation and propagation characteristics of a YBCO tape sample experimentally and numerically, and the experimental results were compared with a simulation conducted utilizing a newly developed computer program based on the finite element method (FEM). We also investigated the influence of Ag stabilizer thickness and Hastelloy substrate on the transient thermal behavior of the YBCO tapes.
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YBCO带正常区起始和传播特性的评价
由于Jc特性在高温和/或高磁场下具有更好的磁场依赖性,因此人们对YBCO带作为“下一代超导体带”寄予厚望。考虑超导应用的稳定性是很重要的;然而,YBCO的稳定性标准尚未明确确立。因此,为了建立YBCO的稳定性判据,我们对YBCO带样的正常区起始和传播特性进行了实验和数值研究,并将实验结果与利用新开发的基于有限元法的计算机程序进行的模拟结果进行了比较。我们还研究了银稳定剂厚度和哈氏合金衬底对YBCO带的瞬态热行为的影响。
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