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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Investigation of ITER Use Internal-Sn Nb3Sn Superconducting Wire Through Irreversibility Temperature Measurement
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Investigation of ITER Use Internal-Sn Nb3Sn Superconducting Wire Through Irreversibility Temperature Measurement

机译:通过不可逆温度测量研究ITER使用内部Sn Nb3Sn超导线的研究

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摘要

By means of a SQUID magnetometer, the irreversibility temperatures and magnetization transitions of an ITER-type internal-Sn Nb3Sn superconducting wire were measured during warming and cooling cycles at a fixed magnetic field. The results obtained show that the irreversibility temperature T*(H) is strongly dependent on A15 phase composition and can be used to optimize the heat treatment process for the internal-Sn Nb3Sn wire. The A15 phase composition in internal-Sn Nb3Sn wire is temperature independent for full-time reaction. From T*(H) and magnetization transition analysis, the heat treatment condition of our ITER use wire is optimized as 675 degC/128 h, which results in the best A15 phase composition suitable for high-field application
机译:借助SQUID磁力计,在固定磁场下的升温和冷却循环中,测量了ITER型内部Sn Nb3Sn超导线的不可逆温度和磁化跃迁。获得的结果表明,不可逆温度T *(H)强烈依赖于A15相的组成,可用于优化内部Sn Nb3Sn焊丝的热处理工艺。内部Sn Nb3Sn焊丝中A15相的组成与温度无关,对于全时反应而言。通过T *(H)和磁化转变分析,我们的ITER用途焊丝的热处理条件被优化为675℃/ 128 h,这导致了适用于高磁场应用的最佳A15相组成

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