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Development of superconducting joints between iron-based superconductor tapes

机译:铁基超导磁带之间超导关节的研制

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摘要

Superconducting joints are essential for future iron-based superconductor applications. In this study, a process for fabricating superconducting joints between Sr1-xKxFe2As2 (Sr-122) tapes was developed for the first time. The Ag sheath was peeled off from one side of each sample. The exposed superconducting parts of the two tapes were joined and wrapped again with Ag foil. The diffusion bonding of the iron-based superconducting joint was achieved by the hot pressing (HP) process in an Ar atmosphere. The superconducting properties, microstructures, and elements distribution of the joint regions were investigated. The pressure was optimized in order to enhance the transport current of the joints. At 4.2 K and 10 T, a transport critical current I-c of 40 A for the joint was obtained, which was approximately 35.3% of the current capacity of the tapes themselves. Furthermore, the joint resistance was below 10(-9) Omega. These results demonstrate that HP was useful for fabricating the superconducting joints.
机译:超导关节对于未来的基于铁基超导体应用是必不可少的。在该研究中,首次开发了制造SR1-XKXFE2AS2(SR-122)胶带之间制造超导关节的方法。从每个样品的一侧剥离Ag鞘。用Ag箔连接两个带的暴露的超导部分,再次缠绕。通过在AR气氛中的热压(HP)方法实现了铁基超导关节的扩散键合。研究了关节区域的超导特性,微观结构和元素分布。优化压力以增强关节的传输电流。在4.2 k和10t下,获得了关节40A的传输临界电流I-C,其自身胶带本身的目前能力约为35.3%。此外,关节电阻低于10(-9)ω。这些结果表明,HP可用于制造超导关节。

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