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Effect of thermomechanical training temperature on the two-way shape memory effect of TiNi and TiNiCu shape memory alloys springs

机译:热机械训练温度对TiNi和TiNiCu形状记忆合金弹簧双向形状记忆效应的影响

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In this article, the effect of thermomechanical training temperature on the two-way shape memory effect (TWSME) of TiNiCu and TiNi alloys springs were investigated. The results showed that when the springs were thermomechanical-trained at pure martensite, there is an increase of the recovery rate to a saturated value, the maximum recovery rate was about 55% and 45% for TiNiCu and TiNi alloys, respectively. As the springs were thermomechanical-trained at pure austensite and martensite + austensite, there is an increase of the recovery rate to a maximum value and decreased with ongoing training after having passed the maximum value and the maximum TWSME recovery rate is less than that of the shape memory alloys spring-trained at pure martensite. Dislocations generated by martensite reorientation were effective in developing two-way memory effect. Since the amount of the stress-induced martensite variants is less than that of thermal-induced martensite variants, thus, the recovery rate showed a different rule with increasing thermomechanical training cycles at different training temperature.
机译:本文研究了热机械训练温度对TiNiCu和TiNi合金弹簧的双向形状记忆效应(TWSME)的影响。结果表明,在纯马氏体上对弹簧进行热机械训练时,TiNiCu和TiNi合金的回复率增加至饱和值,最大回复率分别约为55%和45%。由于弹簧是在纯奥氏体和马氏体+奥氏体上进行热机械训练的,因此恢复率增加到最大值,而经过最大值后,随着进行的训练,恢复率会降低,并且TWSME的最大恢复率小于最大恢复率。形状记忆合金在纯马氏体处受弹簧训练。马氏体重新定向产生的位错有效地发展了双向记忆效应。由于应力诱导的马氏体变体的数量少于热诱导的马氏体变体的数量,因此,随着不同训练温度下热机械训练周期的增加,回收率显示出不同的规律。

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