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Influence of Zn Addition on Microstructures and Martensitic Transformation in CuZr-based Alloys

机译:锌的添加对CuZr基合金显微组织和马氏体相变的影响

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摘要

Compositional dependences on microstructures and martensitic transformation behaviors in (Cu0.5 Zr0.5 )100-x Znx (x =1.5,2.5,4.5,7.0,10.0,and 14.0 at.%)alloys were investigated.It was found that CuZr martensites were present in the present alloys.With increasing Zn content,the volume fractions of CuZr martensitic crystals and B2 CuZr phase gradually decrease and increase,respectively.With the addition of high Zn contents (i.e.,7.0,10.0, and 14.0 at.%),the matrix proves to be eutectic.Thermal analysis results show that the initial martensitic transfor-mation temperature (Ms)decreases from (412±5)K to (329±5)K as the Zn content increases from 1.5 at.% to 14.0 at.%.The values of Ms of Cu-Zr-Zn shape memory alloys are inversely proportional to the number and concen-trations of valence electrons (i.e.,e v/a and c v ),respectively,implying that the martensitic transformation in CuZr-Zn alloys could be of electronic nature.
机译:研究了(Cu0.5 Zr0.5)100-x Znx(x = 1.5,2.5,4.5,7.0,10.0,和14.0 at。%)合金的成分对微观结构和马氏体转变行为的影响。发现CuZr马氏体随着锌含量的增加,CuZr马氏体晶体和B2 CuZr相的体积分数分别逐渐减少和增加.Zn含量高时(7.0、10.0和14.0 at。%)热分析结果表明,随着锌含量从1.5 at。%增加到14.0,初始马氏体转变温度(Ms)从(412±5)K降低到(329±5)K。 Cu-Zr-Zn形状记忆合金的Ms值分别与价电子的数量和浓度(即ev / a和cv)成反比,这暗示着CuZr-中的马氏体相变锌合金可能具有电子性质。

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  • 来源
    《钢铁研究学报(英文版)》 |2016年第1期|31-36|共6页
  • 作者单位

    Department of Physics,School of Science,Northwestern Polytechnical University,Xi′an 710072,Shaanxi, China;

    Department of Physics,School of Science,Northwestern Polytechnical University,Xi′an 710072,Shaanxi, China;

    Department of Physics,School of Science,Northwestern Polytechnical University,Xi′an 710072,Shaanxi, China;

    Department of Physics,School of Science,Northwestern Polytechnical University,Xi′an 710072,Shaanxi, China;

    Department of Physics,School of Science,Northwestern Polytechnical University,Xi′an 710072,Shaanxi, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2024-01-27 02:10:53
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