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Improvements in the processing of large grain, bulk Y-Ba-Cu-O superconductors via the use of additional liquid phase

机译:通过使用额外的液相改善大谷物,大谷物,批量Y-Ba-Cu-O超导体

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摘要

A major limitation to the widespread application of Y-Ba-Cu-O (YBCO) bulk superconductors is the relative complexity and low yield of the top seeded melt growth (TSMG) process, by which these materials are commonly fabricated. It has been demonstrated in previous work on the recycling of samples in which the primary growth had failed, that the provision of an additional liquid-rich phase to replenish liquid lost during the failed growth process leads to the reliable growth of relatively high quality recycled samples. In this paper we describe the adaptation of the liquid phase enrichment technique to the primary TSMG fabrication process. We further describe the observed differences between the microstructure and superconducting properties of samples grown with additional liquid-rich phase and control samples grown using a conventional TSMG process. We observe that the introduction of the additional liquid-rich phase leads to the formation of a higher concentration of Y species at the growth front, which leads, in turn, to a more uniform composition at the growth front. Importantly, the increased uniformity at the growth front leads directly to an increased homogeneity in the distribution of the Y-211 inclusions in the superconducting Y-123 phase matrix and to a more uniform Y-123 phase itself. Overall, the provision of an additional liquid-rich phase improves significantly both the reliability of grain growth through the sample thickness and the magnitude and homogeneity of the superconducting properties of these samples compared to those fabricated by a conventional TSMG process.
机译:对Y-Ba-Cu-O(YBCO)块体超导体的广泛应用的主要限制是顶部种子熔体生长(TSMG)方法的相对复杂性和低产量,通过该熔融生长(TSMG)方法,通过该熔融生长(TSMG)方法。在以前的研究中已经证明了初级生长失败的样品的回收,即在失败的生长过程中提供额外的富含液体液相损失,导致相对高质量的再循环样品的可靠增长。本文描述了液相富集技术对初级TSMG制造过程的改编。我们进一步描述了使用常规TSMG工艺生长的富含液体的相和对照样品的样品的微观结构和超导性能之间观察到的差异。我们观察到额外的富含液相相的引入导致在生长前部形成较高浓度的Y物种,反过来导致生长前方更均匀的组合物。重要的是,生长前沿的增加的均匀性直接导致在超导Y-123相基质中的Y-211夹杂物的分布和更均匀的Y-123相本身中增加均匀性。总体而言,与通过传统的TSMG工艺制造的那些相比,提供了通过样品厚度和这些样品的超导性能的幅度和均匀性的显着提高了这些样品的粒度的可靠性。

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