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STRUCTURE AND HIGH-FIELD PERFORMANCE OF JELLY ROLL PROCESSED Nb_3Sn WIRES USING Sn-Ta AND Sn-Ti BASED ALLOY SHEET

机译:使用Sn-Ta和Sn-Ti基合金板的果冻卷加工Nb_3sn线的结构和高场性能

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Sn-Ta based alloy buttons of different compositions were prepared by the melt diffusion process among constituent metal powders, and then pressed into plates. Meanwhile Sn-Ti based alloy plates were sliced from the melt and cast ingot. Resulting Sn-based alloy plates were rolled into thin sheets. The Sn-based alloy sheet was laminated with a Nb sheet, and wound into a Jelly Roll (JR) composite. The composite was encased in a sheath, and fabricated into a thin wire followed by the heat treatment. The application of hydrostatic extrusion is useful at the initial stage of the fabrication. The JR wires using Sn-Ta and Sn-Ti based alloy sheets show a non-Cu Jc of ~250 A/mm2 and ~150 A/mm2 at 20 T and 22 T, respectively, at 4.2 K. It has been found that the Nb impregnates into the Sn-based alloy layers during the reaction, and Nb3Sn layers are synthesized by the mutual diffusion between the Nb sheet and the Sn-based alloy sheet without formation of voids. Sn-Ti based alloy sheets are attractive due to their easiness of mass production. Structure and high-field performance of JR processed Nb3Sn wires prepared from Sn-based alloy sheets with different compositions are compared in this article.
机译:通过组成金属粉末中的熔体扩散过程制备不同组成的SN-TA基合金按钮,然后压入板中。与此同时,Sn-Ti基合金板从熔体和铸锭切成薄片。将基于Sn基合金板卷成薄片。将Sn系合金片用Nb片材层压,并缠绕成果冻辊(JR)复合材料。复合材料被包裹在护套中,并制造成薄导线,然后进行热处理。静压挤出的应用在制造的初始阶段是有用的。使用Sn-Ta和Sn-Ti基合金板的JR线分别显示出〜250a / mm2和〜150a / mm2的非Cu Jc,分别为4.2k。它已被发现Nb在反应过程中浸渍到Sn基合金层中,并且通过Nb片材和Sn基合金片之间的互扩散而没有形成空隙,合成Nb 3 Sn层。由于它们对批量生产的容易性,SN-Ti基合金纸具有吸引力。在本文中比较了由Sn基合金板制备的JR加工的NB3SN线的结构和高场性能。

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