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Phase-Field Modeling of Polycrystalline Solidification: From Needle Crystals to Spherulites—A Review

机译:多晶凝固的相场建模:从针状晶体到球晶—综述

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Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The models applied incorporate homogeneous and heterogeneous nucleation of growth centers and several mechanisms to form new grains at the perimeter of growing crystals, a phenomenon termed growth front nucleation. Examples for PF modeling of such complex polycrystalline structures are shown as impinging symmetric dendrites, polycrystalline growth forms (ranging from disordered dendrites to spherulitic patterns), and various eutectic structures, including spiraling two-phase dendrites. Simulations exploring possible control of solidification patterns in thin films via external fields, confined geometry, particle additives, scratching/piercing the films, etc. are also displayed. Advantages, problems, and possible solutions associated with quantitative PF simulations are discussed briefly.
机译:回顾了过去基于定向场的相场(PF)模型的进展。应用的模型结合了生长中心的均质和异质成核以及几种在生长晶体的周围形成新晶粒的机制,这种现象称为生长前沿成核。此类复杂多晶结构的PF建模示例显示为撞击对称树枝状晶体,多晶生长形式(从无序树枝状晶体到球形晶状体)以及各种共晶结构,包括螺旋状的两相树枝状晶体。还显示了模拟,该模拟探索了通过外部场,有限的几何形状,颗粒添加剂,刮擦/刺穿薄膜等方法可能控制的薄膜凝固模式。简要讨论了与定量PF模拟相关的优点,问题和可能的解决方案。

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