形状记忆合金
材料科学
晶体孪晶
成核
分子动力学
弹性(物理)
钛镍合金
马氏体
无扩散变换
复合材料
压缩(物理)
位错
合金
热力学
微观结构
计算化学
化学
物理
作者
Bing Wang,Guozheng Kang,Qianhua Kan,Kun Zhou,Chao Yu
标识
DOI:10.1016/j.commatsci.2017.01.045
摘要
The pseudo-elasticity of equiatomic NiTi shape memory alloy (SMA) nano-pillar subjected to a uniaxial cyclic compression is investigated by molecular dynamics (MD) simulation. By analyzing the local atomic structure, the nucleation sites and propagation paths of martensite transformation and its reverse, the degeneration of pseudo-elasticity and the interaction between martensitic transformation and defects at nano-scale during cyclic compressive deformation are discussed. It is indicated that the nucleation sites and propagation paths of the reverse transformation in the process of unloading are different from that observed in the process of loading (i.e., compression), and the dislocation and twinning are responsible for the changes in the atomic structure and mechanical response, the accumulated irreversible strain and the degeneration of pseudo-elasticity.
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