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首页> 外文期刊>Journal of Materials Science >Thermo-mechanical fatigue of shape memory alloys [Review]
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Thermo-mechanical fatigue of shape memory alloys [Review]

机译:形状记忆合金的热机械疲劳[综述]

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摘要

Shape memory alloys (SMA) produce the largest anomalous reversible strains of all crystalline materials: epsilon(SM) < 10% in comparison to ε(FM) < 1.0% and epsilon(FE) < 0.1% (FM magnetostrictive, FE electrostrictive). They are considered as active materials for applications in which large scale motions are required or because of their high damping capacity for mechanical vibrations. Their use is however limited if a large number of cycles is applied. A survey is given on fatigue phenomena in SMA: 1. classical mechanical fatigue - accumulation of defects, formation and growth of cracks, 2. shape memory fatigue - change of transformation temperatures, reduction or loss of memory, loss of pseudo elasticity or damping capacity. Finally, it is shown how a modification of microstructure by thermo-mechanical treatments (TMT) affects fatigue resistance. In this context primary defects ( as introduced by TMT) and secondary defects ( introduced by mechanical or thermal cycling) have to be distinguished. In case of training for the two-way effect secondary defects are introduced voluntarily. (C) 2004 Kluwer Academic Publishers. [References: 45]
机译:形状记忆合金(SMA)产生所有晶体材料中最大的异常可逆应变:ε(FM)<10%,ε(FM)<1.0%和epsilon(FE)<0.1%(FM磁致伸缩,FE电致伸缩)。它们被认为是用于需要大范围运动的应用的活性材料,或者由于其对机械振动的高阻尼能力而被认为是活性材料。但是,如果应用大量循环,它们的使用将受到限制。对SMA中的疲劳现象进行了调查:1.经典的机械疲劳-缺陷的积累,裂纹的形成和扩展; 2.形状记忆疲劳-转变温度的变化,记忆的减少或丧失,伪弹性或阻尼能力的丧失。最后,显示了通过热机械处理(TMT)进行的微观结构改性如何影响耐疲劳性。在这种情况下,必须区分主要缺陷(由TMT引入)和次要缺陷(由机械或热循环引入)。在训练双向效应的情况下,会自动引入二次缺陷。 (C)2004 Kluwer学术出版社。 [参考:45]

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