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Phase-field lattice Boltzmann simulations of multiple dendrite growth with motion, collision, and coalescence and subsequent grain growth

机译:相扇形晶格玻璃型模拟多枝曲串生长,碰撞和聚结和随后的谷物生长

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In the formation of a typical equiaxed structure during the solidification of metals and alloys, multiple equiaxed dendrites typically grow with motion, collision, and coalescence and subsequently grain growth occurs after the formation of grain boundaries. In this study, we develop a phase-field lattice Boltzmann model that can simulate these complex formation processes involving equiaxed structures. In this model, multiple dendrites are represented by employing multiple phase-field variables, and the formation of grain boundaries is modeled by simply introducing an interaction term between the phase-field variables. Liquid flow is computed using the lattice Boltzmann method, and the motion of a solid is described by solving the equations of motion. Collision-coalescence representation in the present model was validated by performing simulations of collisions between two circular objects. Furthermore, grain growth was validated through static and dynamic conditions in a simple three-grain system. Good agreements with theoretical solutions were obtained for both cases. Finally, using the developed model, a series of formation processes of multiple-dendrite growth with motion, collision, and coalescence and the subsequent grain growth are successfully performed for the first time. (C) 2018 Elsevier B.V. All rights reserved.
机译:在金属和合金凝固过程中形成典型的等轴结构,多种等式的树突通常随着运动,碰撞和聚结而生长,随后发生晶粒边界后发生晶粒生长。在这项研究中,我们开发了一个阶段晶格Boltzmann模型,可以模拟这些涉及等轴结构的复杂形成过程。在该模型中,通过采用多相场变量来表示多个树突,并且通过简单地引入相场变量之间的相互作用项来建模晶界的形成。使用晶格Boltzmann方法计算液体流动,通过求解运动方程来描述固体的运动。通过在两个圆形物体之间执行碰撞模拟来验证本模型中的碰撞结合表示。此外,通过简单的三粒系统中的静态和动态条件验证晶粒生长。两种情况都获得了与理论溶液的良好协议。最后,使用开发的模型,通过运动,碰撞和聚结的多枝曲霉生长的一系列形成过程和随后的晶粒生长。 (c)2018 Elsevier B.v.保留所有权利。

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