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Pattern formation during diffusion limited transformations in solids

机译:固体中扩散受限的转变过程中的图案形成

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摘要

We develop a description of diffusion limited growth in solid-solid transformations, which are strongly influenced by elastic effects. Density differences and structural transformations provoke stresses at interfaces, which affect the phase equilibrium conditions. We formulate equations for the interface kinetics similar to dendritic growth and study the growth of a stable phase from a metastable solid in both a channel geometry and in free space. We perform sharp interface calculations based on Green's function methods and phase field simulations, supplemented by analytical investigations. For pure dilatational transformations we find a single growing finger with symmetry breaking at higher driving forces, whereas for shear transformations the emergence of twin structures can be favorable. We predict the steady state shapes and propagation velocities, which can be higher than in conventional dendritic growth.
机译:我们建立了对固-固相变中扩散受限增长的描述,它受到弹性效应的强烈影响。密度差异和结构转变会在界面处产生应力,从而影响相平衡条件。我们为类似于树枝状晶体生长的界面动力学方程式,并研究了亚稳态固体在通道几何形状和自由空间中稳定相的生长。我们基于格林的函数方法和相场模拟进行了清晰的界面计算,并辅以分析研究。对于纯粹的膨胀变形,我们发现一个单一的生长手指在较高的驱动力下对称性破裂,而对于剪切变形,孪生结构的出现可能是有利的。我们预测稳态形状和传播速度,可以比常规树突状生长更高。

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