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Rate dependence of deformation mechanisms in a shape memory alloy

机译:形状记忆合金中变形机理的速率依赖性

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The rate-dependent tensile deformations of twinned martensitic NiTi shape memory alloy (SMA) are studied for strain rates as high as 300s(-1). The results show that the stress plateau associated with the martensite detwinning process still exists under high-strain-rate deformations. The results further suggest that the detwinning process taking place at the initial stage of the tension deformation is not very sensitive to the strain rate at least within the studied range (10(-3)-3 x 10(2) s(-1)). Beyond the stress-plateau region where dislocation mechanisms are expected to dominate the deformation processes, the stress level increases more strongly with increasing strain rate. The transformation characteristics and shape recovery processes of the dynamically deformed samples provide further evidence that the detwinning process is well developed in the NiTi SMA under dynamic tension deformation. [References: 26]
机译:研究了应变速率高达300s(-1)的孪晶马氏体NiTi形状记忆合金(SMA)的速率依赖性拉伸变形。结果表明,在高应变率变形下,与马氏体脱晶过程相关的应力平台仍然存在。结果进一步表明,至少在所研究的范围内(10(-3)-3 x 10(2)s(-1),在拉伸变形的初始阶段发生的解缠过程对应变率不是很敏感。 )。除了应力高原地区,在该地区预计位错机制将主导变形过程,应力水平随着应变率的增加而更加强烈。动态变形样品的变形特性和形状恢复过程提供了进一步的证据,表明在动态拉伸变形下,NiTi SMA中的解缠过程得到了很好的发展。 [参考:26]

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