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Tensile strain transverse compressive stress dependence of critical current in Bi(2212) superconducting tapes with Zr-reinforced Ag sheath

机译:Zr增强Ag护套Bi(2212)超导带中临界电流的拉伸应变横向压缩应力依赖性

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摘要

The tensile mechanical property and the axial tensile strain/transverse compressive stress dependence of the critical current I-c in mono-and 19-core Bi(2212) superconducting tapes with Zr-reinforced Ag sheaths were evaluated at a temperature of 4.2 K and a magnetic field of 14 T. Replacement of Ag sheath by Ag-Zr alloy sheath increased the 0.2% proof stress and the onset tensile strain for I-c degradation although I-c decreased markedly. Double layer sheath with Ag inner layer and Ag-Zr alloy outer layer improved both the stress-strain relation and the strain characteristics of I-c without remarkable degradation in I-c. The increase in the number of core from 1-19 degraded the tensile strain vs. I-c characteristics of the tape, although no marked change in critical current density is observed. The alloying of sheath also improved the transverse compressive stress vs. I-c characteristics. The effects of Zr alloying of Ag sheath on the mechanical behavior and the stress/strain dependence of I-c of the superconducting composites are briefly discussed with emphasis on texturing of the oxide superconductor. Published by Elsevier Science Ltd. All rights reserved. [References: 20]
机译:在4.2 K的温度和磁场下评估了单电流和19芯Zr增强Ag护套Bi(2212)超导带中的临界电流Ic的拉伸机械性能和轴向拉伸应变/横向压缩应力的依赖性14T。Ag-Zr合金护套代替Ag护套增加了0.2%的屈服强度和Ic降解的起始拉伸应变,尽管Ic明显降低。带有Ag内层和Ag-Zr合金外层的双层护套改善了I-c的应力-应变关系和应变特性,而I-c却没有明显降低。尽管没有观察到临界电流密度的显着变化,但是芯数从1-19的增加降低了带的拉伸应变与I-c特性。护套的合金化还改善了横向压缩应力与I-c的关系。简要讨论了Zr合金化的Ag鞘层对超导复合材料的力学行为和I-c应力/应变依赖性的影响,重点是氧化物超导体的织构化。由Elsevier Science Ltd.出版。保留所有权利。 [参考:20]

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