首页> 中文期刊> 《稀有金属:英文版》 >Effect of cooling rate on evolution of superconducting phases during decomposition and recrystallization of (Bi,Pb)-2223 core in Ag-sheathed tape

Effect of cooling rate on evolution of superconducting phases during decomposition and recrystallization of (Bi,Pb)-2223 core in Ag-sheathed tape

         

摘要

The reformation of (Bi,Pb)-2223 from the liquid or melt is very important for a melting process of (Bi,Pb)-2223 tape. By combination of quenching experiment with X-ray diffraction (XRD) analysis, the effect of cooling rate on the evolution of three superconducting phases in the (Bi,Pb)-2223 core of Ag-sheathed tape was investigated. The results show that (Bi,Pb)-2223 reformation from the melt seems to experience different routes during slowly cooling at different rates. One is that (Bi,Pb)-2223 phase reformed directly from the melt, and no Bi-2212 participate in this process. The other is that (Bi,Pb)-2223 is converted from the intermediate product, Bi-2212, which formed from the melt during the first cooling stage. Due to the inherent sluggish formation kinetics of (Bi,Pb)-2223 from Bi-2212, only partial (Bi,Pb)-2223 can finally be reformed with the second route.

著录项

  • 来源
    《稀有金属:英文版》 |2006年第z1期|400-404|共5页
  • 作者单位

    Advanced Welding Technology Provincial Key Laboratory;

    Jiangsu University of Science and Technology;

    Zhenjiang 212003;

    China;

    Northwest Institute for Nonferrous Metal Research;

    Xi''an 710016;

    China Advanced Welding Technology Provincial Key Laboratory;

    Jiangsu University of Science and Technology;

    Zhenjiang 212003;

    China Northwest Institute for Nonferrous Metal Research;

    Xi''an 710016;

    China Northwest Institute for Nonferrous Metal Research;

    Xi''an 710016;

    China Northwest Institute for Nonferrous Metal Research;

    Xi''an 710016;

    China Northwest Institute for Nonferrous Metal Research;

    Xi''an 710016;

    China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 稀有金属及其合金;
  • 关键词

    (Bi; Pb)-2223/Ag; tape; cooling; rate; decomposition; and; reformation;

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