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A lattice Boltzmann study on dendritic growth of a binary alloy in the presence of melt convection

机译:熔体对流下二元合金枝晶生长的格子玻尔兹曼研究

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A multi-relaxation-time (MRT) lattice Boltzmann (LB) based model is utilized to simulate the dendritic growth with melt convection in solidification of alloys. It models melt convection by the MRT-LB equation and solute transport by a conservation equation with a pseudo-potential function. The D2Q9 lattice vectors are proposed to describe interface advancement in the liquid-solid transition. Effects of undercoolings, interface curvature and preferred growth orientation are incorporated into the model implicitly. After model validation, dendritic growth under several conditions of pure diffusion and melt convection was numerically investigated, and the solidification entropies were proposed to quantitatively characterize the solidification system. The result shows that the growth behavior, microstructure formation and solute segregation are significantly influenced by melt convection. The solidification entropies reflecting complexity of the solidification system are useful to characterize dendritic growth and solute segregation. This work offers a potential solution for studies of microstructure evolution in solidification of alloys. (C) 2018 Elsevier Ltd. All rights reserved.
机译:利用基于多重弛豫时间(MRT)晶格玻尔兹曼(LB)的模型来模拟合金凝固过程中具有熔融对流的枝晶生长。它通过MRT-LB方程模拟熔体对流,并通过具有伪势函数的守恒方程模拟溶质运移。提出了D2Q9晶格向量来描述液固转变中的界面进展。过冷度,界面曲率和首选生长方向的影响被隐式地纳入模型。经过模型验证,对纯扩散和熔体对流几种条件下的枝晶生长进行了数值研究,并提出了凝固熵来定量表征凝固体系。结果表明,熔体对流显着影响其生长行为,显微组织形成和溶质偏析。反映固化系统复杂性的固化熵可用于表征树枝状生长和溶质偏析。这项工作为合金凝固过程中微观组织演变的研究提供了潜在的解决方案。 (C)2018 Elsevier Ltd.保留所有权利。

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