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首页> 外文期刊>International journal of modeling, simulation and scientific computing >PHASE-FIELD MODELING OF ELASTIC EFFECTS IN EUTECTIC GROWTH WITH MISFIT STRESSES
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PHASE-FIELD MODELING OF ELASTIC EFFECTS IN EUTECTIC GROWTH WITH MISFIT STRESSES

机译:错配共晶生长弹性效应的相场模拟

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Elastic interactions, arising from a difference of lattice spacing between two coherent phases in eutectic alloys with misfit stresses, can have an influence on microstructural pattern formation of eutectic colonies during solidification process. From a thermody-namic point of view the elastic energy contributes to the free energy of the phases and modifies their mutual stability. Therefore, the elastic stresses will have an effect on stability of lamellae, lamellae spacing and growth modes. In this paper, a phase-field model is employed to investigate the influence of elastic misfits in eutectic growth. The model reduces to the traditional sharp-interface model in a thin-interface limit, where the microscopic interface width is small but finite. An elastic model is designed, based on linear microelasticity theory, to incorporate the elastic energy in the phase-field model. Theoretical and numerical approaches, required to model elastic effects, are formulated and the stress distributions in eutectic solidification structures are evaluated. The two-dimensional simulations are performed for directed eutectic growth and the simulation results for different values of the misfit stresses are illustrated.
机译:在具有不匹配应力的共晶合金中,两个相干相之间的晶格间距不同而引起的弹性相互作用,可能会影响凝固过程中共晶菌落的微结构图案形成。从热力学的观点来看,弹性能有助于各相的自由能并改变它们的相互稳定性。因此,弹性应力将对薄片的稳定性,薄片间距和生长模式产生影响。本文采用相场模型研究弹性失配对共晶生长的影响。该模型在微观界面宽度较小但有限的情况下,在薄界面范围内简化为传统的锐界面模型。基于线性微弹性理论,设计了一个弹性模型,将弹性能量纳入相场模型。建立了模拟弹性效应所需的理论和数值方法,并评估了共晶凝固组织中的应力分布。对定向共晶生长进行了二维模拟,并说明了不同失配应力值的模拟结果。

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