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High electrical performance Ag-sheathed Bi-2223 multifilamentary tapes prepared by an optimised PIT processing route

机译:通过优化的PIT加工路线制备的高电性能Ag护套Bi-2223复丝带

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An optimised PIT processing route is introduced and discussed, using results from experiments investigating the effect of processing on microstructure, and subsequently on J/sub c/ in PIT tapes. At 77 K and self-field, the highest J/sub c/ performance of 51000A/cm/sup 2/ has been obtained for 69-filament tapes. High critical current samples with I/sub c/=108A and J/sub c/=36000A/cm/sup 2/ have been measured at 77 K and self-field for 361-filament tapes. Our results indicated that J/sub c/ is influenced by the Pb distribution of Pb-2212, phase composition for the precursor powder, the deformation reduction rate, and the core thickness. Intermediate processing (cooling, deformation and heating) between thermal-mechanical cycles and finally cooling procedures also play an important role on Bi-2223 phase purity and achievement of such high electrical performance in the tapes.
机译:介绍和讨论了一种优化的PIT加工路线,它使用了实验结果来研究加工对微观结构的影响,随后对PIT磁带中的J / sub c /产生了影响。在77 K和自电场下,对于69根丝带,其最高J / sub c /性能达到51000A / cm / sup 2 /。 I / sub c / = 108A和J / sub c / = 36000A / cm / sup 2 /的高临界电流样品已在361根胶带的自电场下以77 K进行了测量。我们的结果表明,J / sub c /受以下因素影响:Pb-2212的Pb分布,前体粉末的相组成,变形降低率和芯厚度。热机械循环之间的中间处理(冷却,变形和加热)以及最终的冷却程序也对Bi-2223相的纯度以及在胶带中实现如此高的电气性能起着重要的作用。

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