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Spreading and solidification of a molten metal droplet impinging on a heated surface

机译:撞击在加热表面上的熔融金属液滴的散布和凝固

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摘要

The spreading and solidification processes of a molten metal droplet impinging on a heated solid surface are studied theoretically. The present work is based on Madejski's splat-quench solidification model proposed for the application of plasma spray coating. In contrast to the original model, the initial conditions are modeled in the present work at an instant away from the start of impact. The numerical results on the evolution of the droplet spreading obtained from the present model are compared with the predictions of previous model and available experimental data reported in the literature. It is shown that the present model predictions are in good agreement with the experimental measurements for the inertia driven droplet impact cases. It is further shown that the present model is more suitable for the droplet impact cases showing low Stefan number and high Peclet number.
机译:从理论上研究了熔融金属液滴撞击在加热的固体表面上的扩散和凝固过程。目前的工作基于Madejski提出的等离子喷涂涂层的急骤凝固模型。与原始模型相反,在当前工作中,从碰撞开始的瞬间就对初始条件进行了建模。从本模型获得的液滴散布演变的数值结果与先前模型的预测以及文献中报道的可用实验数据进行了比较。结果表明,目前的模型预测与惯性驱动液滴撞击情况下的实验测量结果吻合良好。进一步表明,本模型更适合于显示低斯蒂芬数和高皮克莱特数的液滴冲击情况。

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