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NUMERICAL ANALYSIS OF NON-ISOTHERMAL REMELTING AND SOLIDIFICATION DURING MOLTEN DROPLET IMPACT ON A SUBSTRATE

机译:基材熔融液滴冲击期间非等温重熔和凝固的数值分析

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The non-isothermal phase change behavior of a droplet impingement on a solid substrate is studied which can be used to select the operating parameters in processes like microcasting and spray deposition. The governing equation for the flow field is solved using a finite difference scheme with a two-step projection method on a fixed computational grid. The Volume of Fluid (VOF) method is used to track the free surface and the Continuum Surface Force (CSF) method is used to model the surface tension. An enthalpy formulation of the energy equation with a porosity model is used to solve for the temperature. A comparison with published experimental findings is used to validate the numerical model and a good agreement is observed. The effects of convection terms in the energy equation are examined and the physics of spreading and solidification are studied. A parametric study relating the effects of substrate preheating and impact velocity on remelting, cooling rate and spreading has also been carried out. It is observed that the spreading time may not be negligible compared to the solidification time unlike what is assumed in some literature. The flow field during spreading and recoiling does have a significant impact on the cooling rates and microstructure properties. It is also concluded that higher remelting can be achieved by preheating the substrate and with slower droplet impact velocity.
机译:研究了在固体基板上的液滴冲击的非等温相变行为,其可用于选择微塑性和喷射沉积的过程中的操作参数。使用具有在固定计算网格上的两步投影方法的有限差分方案来解决流场的控制方程。流体(VOF)方法的体积用于跟踪自由表面,连续表面力(CSF)方法用于模拟表面张力。使用具有孔隙率模型的能量方程的焓配方用于解决温度。与已发表的实验结果进行比较用于验证数值模型,观察到良好的协议。研究了对流术语在能量方程中的影响,研究了扩散和凝固物理学。还进行了参数研究,将衬底预热和冲击速度对重熔,冷却速率和扩展的影响。与凝固时间相比,观察到扩散时间可能与凝固时间不同,这与一些文献中的某些文献中的假设不同。传播和重塑过程中的流场确实对冷却速率和微观结构性能产生显着影响。还得出结论,通过预热基板和较慢的液滴冲击速度,可以实现更高的重熔。

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