形状记忆合金
磁滞
材料科学
磁性
热弹性阻尼
非线性系统
三元运算
钛合金
钛镍合金
凝聚态物理
热的
合金
热力学
计算机科学
冶金
物理
量子力学
程序设计语言
作者
Jun Cui,Yong S. Chu,Olugbenga O. Famodu,Yasubumi Furuya,Jae. Hattrick-Simpers,Richard D. James,Alfred Ludwig,Sigurd Thienhaus,Manfred Wuttig,Zhiyong Zhang,Ichiro Takeuchi
出处
期刊:Nature Materials
[Springer Nature]
日期:2006-03-05
卷期号:5 (4): 286-290
被引量:624
摘要
Reversibility of structural phase transformations has profound technological implications in a wide range of applications from fatigue life in shape-memory alloys (SMAs) to magnetism in multiferroic oxides. The geometric nonlinear theory of martensite universally applicable to all structural transitions has been developed. It predicts the reversibility of the transitions as manifested in the hysteresis behaviour based solely on crystal symmetry and geometric compatibilities between phases. In this article, we report on the verification of the theory using the high-throughput approach. The thin-film composition-spread technique was devised to rapidly map the lattice parameters and the thermal hysteresis of ternary alloy systems. A clear relationship between the hysteresis and the middle eigenvalue of the transformation stretch tensor as predicted by the theory was observed for the first time. We have also identified a new composition region of titanium-rich SMAs with potential for improved control of SMA properties.
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