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Phase Transformation Twinning and Detwinning of NiTi Shape-Memory Alloy Subject to a Shock Wave Based on Molecular-Dynamics Simulation

机译:基于分子动力学模拟的冲击波作用下NiTi形状记忆合金的相变孪生和孪生

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摘要

Martensitic transformation, reverse martensitic transformation, twinning, and detwinning of equiatomic nickel–titanium shape-memory alloy (NiTi SMA) under the action of a shock wave are studied using a molecular-dynamics simulation. In the loading process of a shock wave, B2 austenite is transformed into B19′ martensite, whereas in the unloading process of the shock wave, B19′ martensite is transformed into B2 austenite. With repeated loading and unloading of the shock wave, martensitic transformation occurs along with twinning, but reverse martensitic transformation appears along with detwinning. The mechanisms for the twinning and detwinning of NiTi SMA subjected to a shock wave are revealed in order to lay the theoretical foundation to investigate the shape-memory effect and superelasticity.
机译:利用分子动力学模拟研究了等原子镍钛形状记忆合金(NiTi SMA)在冲击波作用下的马氏体相变,马氏体逆相变,孪晶和解缠。在冲击波的加载过程中,B2奥氏体转变为B19'马氏体,而在冲击波的卸载过程中,B19'马氏体转变为B2奥氏体。随着冲击波的反复加载和卸载,马氏体相变与孪生一起发生,但是反马氏体相变与解缠一起出现。揭示了NiTi SMA在冲击波作用下的孪生和解缠机理,为研究形状记忆效应和超弹性奠定了理论基础。

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