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Surface Tension and Energy in Multivariant Martensitic Transformations: Phase-Field Theory, Simulations, and Model of Coherent Interface

机译:多元马氏体相变中的表面张力和能量:相场理论,相干界面模拟和模型

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摘要

The Ginzburg-Landau theory for multivariant martensitic phase transformations is advanced in three directions: the potential is developed that introduces the surface tension at interfaces; a mixed term in gradient energy is introduced to control the martensite-martensite interface energy independent of that for austenite-martensite; and a noncontradictory expression for variable surface energy is suggested. The problems of surface-induced pretransformation, barrierless multivariant nucleation, and the growth of an embryo in a nanosize sample are solved to elucidate the effect of the above contributions. The obtained results represent an advanced model for coherent interface.
机译:用于多相马氏体相变的Ginzburg-Landau理论在三个方向上得到了发展:势能在界面处引入了表面张力。引入了梯度能量的混合项,以独立于奥氏体-马氏体的能量来控制马氏体-马氏体的界面能量;并提出了可变表面能的非矛盾表达式。解决了表面诱导的预转化,无障碍多变量成核和纳米尺寸样品中胚胎生长的问题,以阐明上述贡献的影响。获得的结果代表了相干界面的高级模型。

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