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Simulation of plasma dynamics in a keyhole during laser welding of metal with deep penetration

机译:深熔金属激光焊接过程中锁孔中等离子体动力学的模拟

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摘要

Physical processes occurring in the keyhole during the deep-penetration laser welding of aluminium, where evaporation, ionization and formation of near-surface low-temperature plasma can take place, are studied theoretically. Equations of radiation gas dynamics including the equilibrium model of plasma, description of laser radiation transport and absorption are solved. Numerical calculations of plasma cloud propagation processes in aluminium vapour are performed in a one-dimensional approach. The minimum radiation power necessary to maintain this cloud is found. The effect of radiation trapping by plasma due to self-absorption in the optically thick plasma layer is revealed. The simulation results are of interest for a qualitative understanding of the processes in the keyhole plasma.
机译:从理论上研究了铝的深穿透激光焊接过程中在锁孔中发生的物理过程,在该过程中会发生蒸发,电离和近表面低温等离子体的形成。解决了辐射气体动力学方程,包括等离子体平衡模型,激光辐射传输和吸收的描述。铝蒸气中等离子云传播过程的数值计算是在一维方法中进行的。找到维持该云所需的最小辐射功率。揭示了由于在光学上厚的等离子体层中的自吸收而导致的等离子体捕获的辐射的影响。为了对定孔等离子体中的过程进行定性了解,仿真结果很有用。

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