Ab'/> <![CDATA[Elastocaloric effect in polycrystalline Ni <ce:inf loc='post'>50</ce:inf>Ti <ce:inf loc='post'>45.3</ce:inf>V <ce:inf loc='post'>4.7</ce:inf> shape memory alloy]]>
首页> 外文期刊>Scripta materialia >50Ti 45.3V 4.7 shape memory alloy]]>
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50Ti 45.3V 4.7 shape memory alloy]]>

机译:<![CDATA [POLYCRYSTALLINE NI的弹性效应 50 TI 45.3 PLACE =“POST” > 4.7 形状记忆合金]]>

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摘要

AbstractThe elastocaloric effect and functional fatigue life of the polycrystalline Ni50Ti45.3V4.7shape memory alloy have been studied. Temperature changes on rapid loading and unloading of a mechanically trained specimen were directly measured at different compressive stress levels. It was found that the maximum elastocaloric strength was accomplished at the stress corresponding to the end point of a transformation plateau. In the fatigue test, no significant degradation occurred in the elastocaloric cooling ability after 5000cyclic loadings. Compared to pure NiTi, the present alloy showed improved efficiency and endurance limit of the functional stability.Graphical abstractDisplay Omitted]]>
机译:<![cdata [ 抽象 多晶体Ni的弹性效果和功能疲劳寿命 50 < / CE:INF> TI 45.3 V 4.7 形状记忆合金已经研究过。在不同的压缩应力水平下直接测量机械训练样本的快速加载和卸载的温度变化。结果发现,在对应于转化高原的终点的应力下完成了最大弹性强度。在疲劳试验中,在5000个环后,弹性冷却能力没有显着降解发生显着的降解。与纯Niti相比,本合金显示出效率稳定性的提高效率和耐久极限。 图形抽象 显示省略 ]]>

著录项

  • 来源
    《Scripta materialia》 |2018年第2018期|共4页
  • 作者单位

    Department of Materials Science and Engineering and Research Institute of Advanced Materials Seoul National University;

    Department of Materials Science and Engineering and Research Institute of Advanced Materials Seoul National University;

    Department of Materials Science and Engineering and Research Institute of Advanced Materials Seoul National University;

    Gangwon Regional Division Korea Institute of Industrial Technology;

    Department of Materials Science and Engineering and Research Institute of Advanced Materials Seoul National University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
  • 关键词

    Elastocaloric effect; Shape memory alloys; Martensitic phase transformation; Fatigue test;

    机译:弹性焦点;形状记忆合金;马氏体相变;疲劳试验;

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