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Laser produced melt pool: Influence of laser intensity parameter on flow field in melt pool

机译:激光熔池:激光强度参数对熔池流场的影响

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摘要

The flow field developed in the laser produced melt pool is investigated and the influence of the Marangoni effect on temperature field is examined. The experiment is carried out to trace the solidified melt pool geometry and the heating is simulated in line with the experimental conditions to predict the melt size in the irradiated region. In the simulations, the control volume approach is used incorporating the Marangoni effect. The enthalpy-porosity method is adopted to account for the phase change in the irradiated region. The study is extended to include the influence of the laser intensity parameter (β) on temperature and the flow field in the melt pool. It is found that the melt pool geometry and the flow field in the melt pool is influenced by the laser intensity parameter. In this case, the number of circulation cell formed in the melt pool is doubled for the intensity parameter 0.4≤β≤0.6. The predictions of the melt pool geometry agree well with the experimental data.
机译:研究了在激光产生的熔池中形成的流场,并研究了马兰戈尼效应对温度场的影响。进行实验以追踪凝固的熔池的几何形状,并根据实验条件模拟加热情况,以预测照射区域的熔体尺寸。在模拟中,使用了结合了Marangoni效应的控制体积方法。采用焓-孔隙率法来说明被照射区域的相变。该研究扩展到包括激光强度参数(β)对温度和熔池中流场的影响。发现熔池的几何形状和熔池中的流场受激光强度参数的影响。在这种情况下,对于强度参数0.4≤β≤0.6,在熔池中形成的循环室数量增加了一倍。熔池几何形状的预测与实验数据非常吻合。

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