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受热时的跳跃式形状记忆合金。

A jumping shape memory alloy under heat.

作者信息

Yang Shuiyuan, Omori Toshihiro, Wang Cuiping, Liu Yong, Nagasako Makoto, Ruan Jingjing, Kainuma Ryosuke, Ishida Kiyohito, Liu Xingjun

机构信息

Department of Materials Science and Engineering, College of Materials, Xiamen University, Xiamen, 361005, P.R. China.

Department of Materials Science, Graduate School of Engineering, Tohoku University, 6-6-02 Aoba-yama, Sendai 980-8579, Japan.

出版信息

Sci Rep. 2016 Feb 16;6:21754. doi: 10.1038/srep21754.

Abstract

Shape memory alloys are typical temperature-sensitive metallic functional materials due to superelasticity and shape recovery characteristics. The conventional shape memory effect involves the formation and deformation of thermally induced martensite and its reverse transformation. The shape recovery process usually takes place over a temperature range, showing relatively low temperature-sensitivity. Here we report novel Cu-Al-Fe-Mn shape memory alloys. Their stress-strain and shape recovery behaviors are clearly different from the conventional shape memory alloys. In this study, although the Cu-12.2Al-4.3Fe-6.6Mn and Cu-12.9Al-3.8Fe-5.6Mn alloys possess predominantly L2(1) parent before deformation, the 2H martensite stress-induced from L2(1) parent could be retained after unloading. Furthermore, their shape recovery response is extremely temperature-sensitive, in which a giant residual strain of about 9% recovers instantly and completely during heating. At the same time, the phenomenon of the jumping of the sample occurs. It is originated from the instantaneous completion of the reverse transformation of the stabilized 2H martensite. This novel Cu-Al-Fe-Mn shape memory alloys have great potentials as new temperature-sensitive functional materials.

摘要

形状记忆合金由于具有超弹性和形状恢复特性,是典型的温度敏感金属功能材料。传统的形状记忆效应涉及热致马氏体的形成与变形及其逆转变。形状恢复过程通常在一定温度范围内发生,显示出相对较低的温度敏感性。在此我们报道了新型的Cu-Al-Fe-Mn形状记忆合金。它们的应力-应变和形状恢复行为与传统形状记忆合金明显不同。在本研究中,尽管Cu-12.2Al-4.3Fe-6.6Mn和Cu-12.9Al-3.8Fe-5.6Mn合金在变形前主要为L2(1)母相,但从L2(1)母相应力诱发的2H马氏体在卸载后能够保留。此外,它们的形状恢复响应对温度极其敏感,其中约9%的巨大残余应变在加热过程中瞬间且完全恢复。同时,出现了样品跳跃现象。这源于稳定化2H马氏体逆转变的瞬间完成。这种新型的Cu-Al-Fe-Mn形状记忆合金作为新型温度敏感功能材料具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d93a/4754943/7b0e865552b1/srep21754-f1.jpg

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