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Manufacture and superconductivity of tantalum matrix RHQT processed Nb/sub 3/Al superconductors

机译:钽基RHQT处理的Nb / sub 3 / Al超导体的制造和超导性

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The replacement of Nb matrix with Ta for rapid-heating, quenching and transformation annealing (RHQT) processed Nb/sub 3/Al conductor seems to be advantageous for facilitating the RHQ operation due to a higher mechanical strength at elevated temperatures and less reactivity with the molten Ga in the quench bath and suppressing flux jumps in low magnetic fields. We have fabricated three grades of the Ta matrix precursor, in which the volume fraction of Ta matrix is different, so as to examine the drawability of such Ta matrix precursors. Also examined are the effects of using the Ta matrix on the RHQ condition, T/sub c/ values after quenching and subsequent annealing, respectively, J/sub c/ (core), overall residual resistivity, and magnetization curves. We have succeeded in drawing all of Ta matrix precursors and confirmed the favorable existence of a plateau region in the I/sub RHQ/-T/sub c/ relationship even for the Ta matrix RHQT Nb/sub 3/Al conductors. The resulting superconducting properties were comparative to those of Nb matrix conductors. The replacement of Nb matrix with Ta was very effective in suppressing flux jumps even at 4.2 K.
机译:用Ta代替Nb基体进行快速加热,淬火和相变退火(RHQT)处理的Nb / sub 3 / Al导体似乎是有利于促进RHQ操作的原因,因为在高温下具有较高的机械强度,并且与镍的反应性较低。在淬火槽中熔化Ga并抑制低磁场中的磁通跳跃。我们制备了三种等级的Ta基体前体,其中Ta基体的体积分数不同,以检验这种Ta基体前体的可拉性。还检查了使用Ta矩阵对RHQ条件,淬火和随后退火后的T / sub c /值,J / sub c /(芯),总残余电阻率和磁化曲线的影响。我们已经成功地绘制了所有的Ta基质前体,并确认了即使对于Ta基质RHQT Nb / sub 3 / Al导体,在I / sub RHQ / -T / sub c /关系中也存在平稳区的有利条件。所产生的超导性能与Nb基体导体的相比。用Ta代替Nb基质即使在4.2 K时也能有效抑制通量跳跃。

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