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A coupled Cellular Automaton-Lattice Boltzmann model for grain structure simulation during additive manufacturing

机译:用于增材制造过程中晶粒结构模拟的元胞自动机-格子Boltzmann耦合模型

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A 2D coupled Cellular Automaton (CA)-Lattice Boltzmann (LB) model has been developed to simulate grain structure evolution during powder-bed-based, layer by layer, additive manufacturing (AM). The presented model includes algorithms for random powder layer generation, electron beam energy absorption, evaporation, capillarity and wetting, meltpool dynamics, its temperature evolution and face centered cubic grain solidification. The model is first validated against the experimental findings of single track electron beam melting and solidification of a baseplate and then applied to simulate the grain structure produced during AM. Influence of the hatching strategy on grain structure is presented as well as stray grain formation resulting from partially molten powder particles. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经开发了二维耦合细胞自动机(CA)-格子玻尔兹曼(LB)模型,以模拟基于粉末床的逐层增材制造(AM)过程中的晶粒结构演变。该模型包括用于随机粉末层生成,电子束能量吸收,蒸发,毛细作用和润湿,熔池动力学,其温度演变和面心立方晶粒凝固的算法。该模型首先针对单轨电子束熔化和基板固化的实验结果进行验证,然后应用于模拟AM产生的晶粒结构。提出了孵化策略对晶粒结构的影响,以及由于部分熔融粉末颗粒导致的杂散晶粒形成。 (C)2016 Elsevier B.V.保留所有权利。

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