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Phase-transformation wave propagating in a temperature-gradient shape-memory TiNi alloy rod under shock loading

机译:在冲击载荷下,在温度梯度形状记忆TINI合金标杆中传播的相变波

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In this work, the propagation of a phase transformation front in a temperature-gradient rod induced by an impact loading is studied. Based on the characteristic-line theory, it is found that for loading, with the decay of the phase boundary, the phase-transition shock wave is gradually transformed into a phase-transition wave and an elastic wave. As a consequence, a functional gradient medium (phase II, mixed phase and phase I) forms in such temperature-gradient rod. Dimensional analysis shows that the widths of phase II and the mixed-phase regions are directly proportional to the amplitude of the loading stress but inversely proportional to the temperature gradient. Numerical calculations, based on a first-order Lax-Friedrichs finite-difference scheme, are presented. The calculated results are in good agreement with the characteristic-line theory and dimensional analysis results.
机译:在这项工作中,研究了通过冲击载荷引起的温度梯度杆中的相变前沿的传播。 基于特征线理论,发现用于加载相位边界的衰减,相变冲击波逐渐变换成相移波和弹性波。 结果,在这种温度梯度杆中形成功能梯度培养基(相II,混合相和相I)。 尺寸分析表明,相位II和混合相区域的宽度与负载应力的幅度成比例,但与温度梯度成反比。 提出了基于一阶LAX-Friedrichs有限差分方案的数值计算。 计算结果与特征线理论和尺寸分析结果吻合良好。

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