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Optimisation of the reaction heat treatment cycle of internal tin and bronze Nb_3Sn strands for ITER

机译:用于ITER的锡和青铜Nb_3Sn内部链的反应热处理周期的优化

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摘要

The heat treatment cycles of Nb_3Sn superconductor strands are mainly designed to achieve the highest possible critical currents and are, therefore, very long (up to nearly 600 h including ramping times). Such long interruptions would delay the manufacturing cycle of large superconducting magnet coils considerably. Therefore, it was of interest to investigate if the same or nearly the same performance of the strands could be achieved with shorter heat treatment cycles. Strand material used for the TTER CS and TF model coils from two European suppliers were submitted to various heat treatments and subsequently characterised with respect to critical current, hysteresis losses, residual resistance ratio (RRR) and magneto-resistance. The measurements were supplemented by metallurgical and microscopic investigations. This paper summarises the promising results opening the possibility to shorten the total heat treatment time for the ITER TF coils by approximately 1 year.
机译:Nb_3Sn超导体股线的热处理周期主要设计为获得尽可能高的临界电流,因此非常长(包括爬升时间在内,最长可达600 h)。如此长的中断将大大延迟大型超导电磁线圈的制造周期。因此,研究较短的热处理周期能否达到相同或几乎相同的股线性能,是很有意义的。来自两个欧洲供应商的用于TTER CS和TF模型线圈的线材材料经过了各种热处理,随后针对临界电流,磁滞损耗,残余电阻比(RRR)和磁阻进行了表征。通过冶金和显微镜研究对测量结果进行了补充。本文总结了令人鼓舞的结果,为将ITER TF线圈的总热处理时间缩短约1年开辟了可能性。

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