YBCO coated conductor の臨界電流の応力(ひずみ)効果に与えるバッファー層の影響

菅野 未知央, 光造 長村, Werner Prussuit, 司 木吉, 伊藤 喜久男
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Abstract

The stress and strain dependence of the critical current (Ic) was examined for YBCO-coated conductors with IBAD-CeO2/YSZ or ISD-MgO buffer layers. For all samples, Ic increased as the stress was increased and reached a maximum. For larger tensile stress, Ic started to decrease. The reversibility of Ic showed a different behavior depending on the buffer layer. For the tape buffered with IBAD-CeO2/YSZ, Ic recovered to the initial value after the applied strain reached 0.30%. On the other hand, a smaller reversible strain was observed for the ISD-buffered tape. The difference of the reversible strain was discussed based on a microstructure observation. For all samples, quenching occurred at a strain of more than 0.30%. Compared to the stress-strain curve of composite tapes, it was confirmed that quenching strains were determined by the yield strain of the Hastelloy substrate. The strain scaling law for the present YBCO-coated conductors was found to be similar to that for A15-type superconductors.
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缓冲层对YBCO coated conductor的临界电流应力(应变)效果的影响
研究了具有IBAD-CeO2/YSZ或ISD-MgO缓冲层的ybco涂层导体的临界电流(Ic)与应力和应变的关系。对于所有样品,Ic随着应力的增加而增加,并达到最大值。当拉伸应力较大时,Ic开始降低。Ic的可逆性随缓冲层的不同表现出不同的行为。对于IBAD-CeO2/YSZ缓冲带,当外加应变达到0.30%时,Ic恢复到初始值。另一方面,isd缓冲带的可逆应变较小。在显微组织观察的基础上,讨论了可逆应变的差异。所有试样在应变大于0.30%时均发生淬火。通过与复合带的应力-应变曲线的比较,证实了淬火应变是由哈氏合金基体的屈服应变决定的。发现ybco涂层导体的应变缩放规律与a15型超导体相似。
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