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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Fabrication of Long-Length ${rm Nb}_{3}{rm Al}$ Wire by the Metastable Solid-Solution-Strand Restacking Method
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Fabrication of Long-Length ${rm Nb}_{3}{rm Al}$ Wire by the Metastable Solid-Solution-Strand Restacking Method

机译:亚稳固溶体链重堆积法制备长$ {rm Nb} _ {3} {rm Al} $焊丝

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摘要

This paper describes two subjects, both aimed at the industrialization of ${rm Nb}_{3}{rm Al}$ conductors. One is the metastable solid-solution-strand restacking method, which is expected to be a low-cost Cu-stabilization method compared with the electroplating technique. In this paper, we mainly focus on recent efforts toward long-length production. The key point here is an improvement of the contact between the Cu tube and the restacked original strands. The second subject is the first attempt at “constant voltage” control in the continuous rapid-heating and quenching operation for 300-m-class precursor wire. With constant current control, changes in the diameter of the wire lead to variations in power per unit volume, so that the processing temperature changes. With constant voltage control, changes in diameter of the wire do not lead to changes in the power per unit volume, so that the processing temperature does not change and thus the uniformity of the longitudinal performance is improved.
机译:本文介绍了两个主题,均针对工业化$ {rm Nb} _ {3} {rm Al} $导体。一种是亚稳固溶体链重堆积方法,与电镀技术相比,它有望成为一种低成本的铜稳定方法。在本文中,我们主要集中于近期对长距离生产的努力。这里的关键是改善铜管和重新堆叠的原始股线之间的接触。第二个主题是在300 m级前驱线的连续快速加热和淬火操作中首次尝试“恒定电压”控制。在恒定电流控制下,导线直径的变化会导致每单位体积功率的变化,从而使加工温度发生变化。通过恒定电压控制,导线直径的改变不会导致每单位体积的功率改变,因此处理温度不会改变,因此纵向性能的均匀性得到改善。

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