粉入管法MgB2胶带线材中的失真效果

仁 北口, 浩明 熊倉
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摘要

本文研究了三种“管内粉末(PIT)”路径MgB2导体纵向机械应变对临界电流(Ic)的影响,即应变效应。我们测试了原位单芯MgB2/铁,非原位单芯MgB2/不锈钢和非原位14丝MgB2/镍带。在4.2、15、20和25K的磁场(B)中,使用不锈钢制成的u形装置测量每个样品的Ic作为纵向外部应变的函数。尽管制备工艺和导体结构(长丝数、宽度和厚度)不同,但所有MgB2样品中的ic -应变关系基本相同。随着应变的增加,在Ic (Icm)达到最大值时,线性可逆的Ic-应变关系发生了较大的不可逆降解。可逆状态下线性Ic-应变关系的斜率d(Ic/Icm)/d(应变)取决于温度和磁场。讨论了d(Ic/Icm)/d(应变)与不可逆性场(Birr)归一化的磁场之间的关系。我们还研究了非原位PIT单芯在Nb3Sn/不锈钢带中的应变效应。所得到的ic -应变关系为抛物线型关系,是目前已有报道的多种Nb3Sn多丝导体的抛物线型关系。这表明,Ic在MgB2导体中的线性应变依赖性是MgB2的一个基本特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
パウダー·イン·チューブ法MgB2テープ線材における歪効果
We investigate the influence of lengthwise mechanical strain on the critical current (Ic), the strain effects, for three kinds of “powder-in-tube (PIT)" route MgB2 conductors. We tested in situ monocore MgB2/iron, ex situ monocore MgB2/stainless steel, and ex situ 14-filament MgB2/nickel tapes. Ic was measured for each sample as a function of lengthwise external strain in magnetic fields (B) at 4.2, 15, 20, and 25K using a U-shaped rig made of stainless steel. Even though the fabrication process and conductor configuration (number of filaments, width, and thickness) are different, the Ic-strain relations were essentially the same in all MgB2 samples. By increasing the strain, large and irreversible degradation occurred after linear and reversible Ic-strain relation up to the maximum of Ic (Icm). The slope of linear Ic-strain relation in the reversible regime, d(Ic/Icm)/d(strain), depends on both temperature and magnetic field. We discuss the relations between d(Ic/Icm)/d(strain) and magnetic fields normalized by the irreversibility field (Birr.) We also examined the strain effect of ex situ PIT monocore in Nb3Sn/stainless steel tape. The Ic-strain relation obtained is a parabolic one that has been reported so far for many kinds of multifilamentary Nb3Sn conductors. This indicates that the linear strain dependence of Ic in MgB2 conductors is an essential feature of MgB2.
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