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Interfacial energy and dissipation in martensitic phase transformations. Part II: Size effects in pseudoelasticity

机译:马氏体相变中的界面能和耗散。第二部分:伪弹性的尺寸效应

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This paper is a continuation of the Part 1 (H. Petryk, S. Stupkiewicz, Interfacial energy and dissipation in martensitic phase transformations. Part 1: Theory. J. Mech. Phys. Solids, 2010, doi:10.1016/j.jmps.2009.11.003). A fully three-dimensional model of an evolving martensitic microstructure is examined, taking into account size effects due to the interfacial energy and also dissipation related to annihilation of interfaces. The elastic micro-strain energy at microstructured interfaces is determined with the help of finite element computations and is approximated analytically. Three interface levels are examined: of grain boundaries attained by parallel martensite plates, of interfaces between austenite and twinned martensite, and of twin interfaces within the martensite phase. Minimization of the incremental energy supply, being the sum of the increments in the free energy and dissipation of the bulk and interfacial type at all levels, is used as the evolution rule, based on the theory presented in Part I. An example of the formation and evolution of a rank-three laminated microstructure of finite characteristic dimensions in a pseudoelastic CuAINi shape memory alloy is examined quantitatively.
机译:本文是第1部分(H. Petryk,S。Stupkiewicz,马氏体相变中的界面能和耗散)的延续。第1部分:理论。J。机械物理学报,2010,doi:10.1016 / j.jmps。 2009.11.003)。研究了马氏体组织演变的完整三维模型,其中考虑了由于界面能引起的尺寸效应以及与界面an灭有关的耗散。借助有限元计算确定了微结构界面处的弹性微应变能,并进行了解析近似。检查了三个界面水平:平行马氏体板达到的晶界,奥氏体和孪晶马氏体之间的界面以及马氏体相内的双界面。根据第一部分中介绍的理论,增量能量供应的最小化是自由能的增量以及所有类型的界面和主体的耗散的总和,被用作演化规则。定量研究了伪弹性CuAINi形状记忆合金中具有有限特征尺寸的三级层压微结构的演化。

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