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Dynamics of steps along a martensitic phase boundary I: Semi-analytical solution

机译:沿马氏体相界的台阶动力学I:半解析解

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We study the motion of steps along a martensitic phase boundary in a cubic lattice. To enable analytical calculations, we assume antiplane shear deformation and consider a phase-transforming material with a stress-strain law that is piecewise linear with respect to one component of shear strain and linear with respect to another. Under these assumptions we derive a semi-analytical solution describing a steady sequential motion of the steps under an external loading. Our analysis yields kinetic relations between the driving force, the velocity of the steps and other characteristic parameters of the motion. These are studied in detail for one, two and three-step configurations. We show that the kinetic relations are significantly affected by the material anisotropy. Our results indicate the existence of multiple solutions exhibiting sequential step motion.
机译:我们研究了沿着立方晶格中马氏体相边界的台阶运动。为了进行分析计算,我们假设反平面剪切变形,并考虑一种具有应力-应变定律的相变材料,该定律相对于一个剪切应变分量呈分段线性,而相对于另一个分量则呈线性。在这些假设下,我们得出了一个半解析解,描述了外部载荷作用下各步的平稳顺序运动。我们的分析得出了驱动力,步速和运动的其他特征参数之间的动力学关系。将针对一,二和三步配置对这些进行详细研究。我们表明动力学关系受材料各向异性的影响很大。我们的结果表明存在多个显示顺序步进运动的解决方案。

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