Influence of brass laminate volume fraction on electromechanical properties of externally laminated coated conductor tapes

IF 0.2 Q4 PHYSICS, APPLIED
Z. Bautista, H. Shin, Jae-Hun Lee, Hunju Lee, S. Moon
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引用次数: 1

Abstract

The enhancement of mechanical properties of coated conductor (CC) tapes in practical application are usually achieved by reinforcing through lamination or electroplating metal layers on either sides of the CC tape. Mechanical or electromechanical properties of the CC tapes have been largely affected by the lamination structure under various loading modes such as tension, bending or even cyclic. In this study, the influence of brass laminate volume fraction on electromechanical properties of RCE-DR processed Gadolinium-barium-copper-oxide (GdBCO) CC tapes was investigated. The samples used were composed of single-side and both-side laminate of brass layer to the Cu-stabilized CC tape and their I c behaviors were compared to those of the Cu-stabilized CC tape without external lamination. The stress/strain dependences of I c in laminated CC tapes under uniaxial tension were analyzed and the irreversible stress/strain limits were determined. As a result, the increase of brass laminate volume fraction initially increased the irreversible strain limit and became gradual. The corresponding irreversible stress limit, however, showed no difference even though the brass laminate volume fraction increased to 3.4. But the irreversible load limit linearly increased with the brass laminate volume fraction.
黄铜层压体积分数对外涂覆导体带机电性能的影响
在实际应用中,通常是通过层压或在导电带两侧电镀金属层来增强导电带的机械性能。叠层结构对CC胶带在各种载荷模式下的机械或机电性能有很大影响,如拉力、弯曲甚至循环载荷。在本研究中,研究了黄铜层压体积分数对RCE-DR加工GdBCO CC带机电性能的影响。将铜层单层和双面贴合到cu稳定CC胶带上,并与未贴合的cu稳定CC胶带的I - c行为进行比较。分析了CC层合带在单轴拉伸下的应力应变关系,确定了不可逆应力应变极限。结果表明,黄铜层压材料体积分数的增加在初始阶段增加了不可逆应变极限,并逐渐增大。而当黄铜层压体积分数增加到3.4时,其不可逆应力极限没有变化。但不可逆载荷极限随着黄铜层压材料体积分数的增加而线性增加。
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来源期刊
CiteScore
0.40
自引率
33.30%
发文量
0
期刊介绍: Progress in Superconductivity and Cryogenics is the official publication of The Korea Institute of Applied Superconductivity and Cryogenics and the Korean Superconductivity Society. It was launched in 1999, and accepts original research articles and review papers on research on superconductivity and related fields of physics, electronic devices, materials science, large-scale applications for magnets, power and energy, and cryogenics. The Journal is published quarterly in March, June, September, and December each year. Supplemental issues are published occasionally. The official title of the journal is ''Progress in Superconductivity and Cryogenics'' and the abbreviated title is ''Prog. Supercond. Cryog.'' All submitted manuscripts are peer-reviewed by two reviewers. The text must be written in English. All the articles in this journal are KCI and SCOPUS as of 2015. The URL address of the journal is http://psac.kisac.org where full text is available. This work was supported by the Korean Federation of Science and Technology Societies grant funded by the Korea government.
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