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Microstructural control and superconducting properties of YBCO melt textured single crystals.

机译:YBCO熔融织构单晶的微结构控制和超导性能。

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摘要

The high temperature superconductor has great potential for practical applications such as superconducting energy storage systems. Since the levitation force, required specifically for these applications, largely depends on the critical current density and loop size of the superconducting current, large-sized single crystals with high critical current density are desired.; To achieve the goal in fabricating YBa2Cu3O 7-delta (Y123) samples suitable for the applications, detailed and systematic studies are required to gain further understanding of the crystal growth and flux pinning mechanisms. This research is aimed at constituting a contribution to the knowledge base for the Y123 high temperature superconductor field by extending the study of processing conditions involved in controlling the microstructure of the Y123 superconductors for the enhancement of crystal growth and superconductor properties. Relations among processing parameters, microstructure, crystal growth, and critical current density of Y123 superconductors have been established. The experimental results reveal that low heating rate and short holding time can lead to refinement of Y2BaCuO5 (Y211) particles, which is strongly favorable to enhancement of the crystal growth and electrical properties of the Y123 superconductors. It was observed that relatively large Y123 crystals (17-22 mm in size) can be obtained with fine needle-shaped Y211 particles, processed with low heating rate and short holding time at the maximum temperatures.; Additionally, the research also formulated a technique to fabricate Y123 superconductors with improved electrical properties required for the practical applications. By incorporating additives such as BaCeO3, BaSnO 3, Pt and Nd2O3 into Y123 superconductors, refinement of Y211 particles occurs. In addition, secondary phase particles with sizes in sub-micrometer and nanometer range can be formed in the Y123 superconductors. The interfaces between the Y123 matrix and these Y211 or secondary phase particles are believed to act as flux pinning sites and to enhance the critical current density (Jc) in the superconductor. The results showed that formation of secondary phase inclusions in Y123 by doping with BaCeO3, BaSnO 3, Pt or Nd2O3 result in enhancement of J c due to the effective flux pinning.
机译:高温超导体在诸如超导能量存储系统的实际应用中具有巨大潜力。由于这些应用特别需要的悬浮力在很大程度上取决于超导电流的临界电流密度和环路尺寸,因此需要具有高临界电流密度的大尺寸单晶。为了达到制造适合应用的YBa2Cu3O 7-delta(Y123)样品的目的,需要进行详细而系统的研究,以进一步了解晶体的生长和助焊剂固定机理。这项研究旨在通过扩展涉及控制Y123超导体微观结构以增强晶体生长和超导体性能的工艺条件的研究,为Y123高温超导体领域的知识库做出贡献。已经建立了Y123超导体的加工参数,微观结构,晶体生长和临界电流密度之间的关系。实验结果表明,较低的加热速率和较短的保持时间可以导致Y2BaCuO5(Y211)颗粒的细化,这对增强Y123超导体的晶体生长和电学性能非常有利。观察到,用细的针状Y211颗粒可以获得相对较大的Y123晶体(尺寸为17-22mm),在最高温度下以低的加热速率和较短的保持时间进行处理。此外,研究还制定了一种制造Y123超导体的技术,该超导体具有实际应用所需的改进的电性能。通过将诸如BaCeO3,BaSnO3,Pt和Nd2O3之类的添加剂引入Y123超导体,Y211颗粒得以细化。另外,可以在Y123超导体中形成尺寸在亚微米和纳米范围内的次级相颗粒。据认为,Y123基体与这些Y211或次级相颗粒之间的界面起着通量钉扎位点的作用,并增强了超导体中的临界电流密度(Jc)。结果表明,通过掺杂BaCeO3,BaSnO 3,Pt或Nd2O3在Y123中形成第二相夹杂物会由于有效的磁通钉扎而导致J c的提高。

著录项

  • 作者

    Jongprateep, Oratai.;

  • 作者单位

    University of Missouri - Rolla.;

  • 授予单位 University of Missouri - Rolla.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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