材料科学
导线
极限抗拉强度
超导电性
铜
拉伸应变
复合材料
拉伤
弯曲
单轴张力
临界电流
凝聚态物理
冶金
医学
物理
内科学
作者
Xiao Liu,Shaoqing Wei,Yi Shi,Fang Liu,Chao Zhou,Qianbo Li,Yijie Li,Linfei Liu,Zhixiang Shi,Ying Xu,Ying Xu,Pu Duan,Zhixing Yang,Jun‐Yi Ge,Yanpeng Qi,Yuntao Song,Huajun Liu,Zhan Zhang,Jinggang Qin
标识
DOI:10.1088/1361-6668/ac8b3e
摘要
Abstract FeSe 0.5 Te 0.5 coated conductor as a kind of 11-type iron-based superconductor is currently attracting much attention. Recently, the bare FeSe 0.5 Te 0.5 coated conductor tapes were developed by Shanghai Jiao Tong University and verified their superconductivity. For the future application, the FeSe 0.5 Te 0.5 tapes should be subjected to the high electromagnetic forces and stress–strain. In this study, the authors encapsulated the bare FeSe 0.5 Te 0.5 coated conductor tapes with copper layers to enhance the mechanical performance. The reversible critical current performance of the bare and the copper encapsulated FeSe 0.5 Te 0.5 tapes under uniaxial tensile strain was tested. The critical currents of two kinds of tapes were measured over a wide range of applied uniaxial tensile strain by the U-shaped bending spring, respectively. The results show the critical performance of the bare FeSe 0.5 Te 0.5 tapes decreases linearly with respect to tensile strain. The copper encapsulated FeSe 0.5 Te 0.5 tapes have better performance than the bare tapes, with an irreversible tensile strain limit of 0.15%. In addition, the actual irreversible tensile strain limit of the copper encapsulated FeSe 0.5 Te 0.5 tapes reaches 0.29% after considering the influence of the cooling process.
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