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Numerical modeling of melt-pool behavior in selective laser melting with random powder distribution and experimental validation

机译:随机粉末分布选择激光熔化中熔融池行为的数值模型及实验验证

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摘要

A three dimensional selective laser melting process simulation is developed to investigate the melt-pool behavior of a randomly-distributed powder bed with keyhole formation by Nd-YAG laser. In order to simulate a randomly packed powder bed, the discrete element method is introduced to ensure a close match with real conditions. Also, to show the importance of evaporation during laser melting, the melt pool temperature, melt pool dimensions and the surface morphology are used as metrics for comparison. Numerical results show that the keyhole was formed as evaporation occurred, and the shape of the melt pool was narrow and deep, which implied the main direction of heat transfer had changed to being vertical. Through simulation, the transition from keyhole formation to the final convex surface at a local area was discovered. The simulation results are validated via good agreement with the experiment.
机译:开发了三维选择性激光熔化过程模拟,以研究随机分布的粉末床的熔池行为与ND-YAG激光器的锁孔形成。 为了模拟随机包装的粉末床,引入了离散元件方法,以确保与真实条件紧密匹配。 此外,为了显示激光熔化期间蒸发的重要性,熔融池温度,熔融池尺寸和表面形态用作比较的度量。 数值结果表明,形成匙孔作为蒸发发生,熔池的形状狭窄,深深地,暗示热传递的主要方向变为垂直。 通过模拟,发现了从锁孔形成到局部区域的最终凸面的过渡。 仿真结果通过与实验良好的协议进行了验证。

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