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Modeling and Experiments of Laser Cladding With Droplet Injection

机译:液滴注入激光熔覆的建模与实验

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摘要

Laser aided Directed Material Deposition (DMD) is an additive manufacturing process based on laser cladding. A full understanding of laser cladding is essential in order to achieve a steady state and robust DMD process. A two dimensional mathematical model of laser cladding with droplet injection was developed to understand the influence of fluid flow on the mixing, dilution depth, and deposition dimension, while incorporating melting, solidification, and evaporation phenomena. The fluid flow in the melt pool that is driven by thermal capillary convection and an energy balance at the liquid-vapor and the solid-liquid interface was investigated and the impact of the droplets on the melt pool shape and ripple was also studied. Dynamic motion, development of melt pool and the formation of cladding layer were simulated. The simulated results for average surface roughness were compared with the experimental data and showed a comparable trend.
机译:激光辅助定向材料沉积(DMD)是基于激光熔覆的增材制造工艺。对激光熔覆的充分理解对于实现稳态和鲁棒的DMD工艺至关重要。建立了带有熔滴注入的激光熔覆的二维数学模型,以了解流体流动对混合,稀释深度和沉积尺寸的影响,同时结合了熔化,凝固和蒸发现象。研究了由热毛细管对流驱动的熔池中的流体流动,以及在液汽和固液界面处的能量平衡,并研究了液滴对熔池形状和波纹的影响。模拟了动态运动,熔池的发展以及熔覆层的形成。将平均表面粗糙度的模拟结果与实验数据进行比较,并显示出可比的趋势。

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