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A three-dimensional numerical model for a convection-diffusion phase change process during laser melting of ceramic materials

机译:陶瓷材料激光熔融过程中对流扩散相变过程的三维数值模型

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Using a fixed-grid source-based method, a three-dimensional numerical model for a convection-diffusion phase change process during laser melting of ceramic materials has been studied. The model was applied to a realistic binary phase diagram containing a eutectic composition, including both an isothermal phase change occurring at a distinct temperature and a phase change taking place over a temperature range (the "mushy" region phase change). The effects of latent heat of fusion and fluid flow in the melt pool on the temperature, velocity fields and shape of the melt pool were analysed and compared. Results indicated that the effects of latent heat of fusion were more significant than those of fluid flow for two simulation cases, considered in the model. The best prediction accuracy for the profiles of the melt/ solid interfaces was achieved from the developed model by considering both the latent heat of fusion and fluid flow in the melt pool.
机译:使用基于固定网格源的方法,研究了陶瓷材料激光熔融过程中对流扩散相变过程的三维数值模型。将该模型应用于包含共晶成分的实际二元相图,该相图包括在不同温度下发生的等温相变以及在温度范围内发生的相变(“糊状”区域相变)。分析并比较了熔融潜热和熔池中的流体流动对熔池的温度,速度场和形状的影响。结果表明,在模型中考虑的两个模拟情况下,融合潜热的影响比流体流动的影响更大。通过考虑熔化的潜热和熔池中的流体流动,从开发的模型中获得了熔体/固体界面轮廓的最佳预测精度。

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