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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Numerical simulation of full-penetration laser beam welding of thick aluminium plates with inductive support
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Numerical simulation of full-penetration laser beam welding of thick aluminium plates with inductive support

机译:感应支撑厚铝板全穿透激光束焊接的数值模拟

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摘要

A three-dimensional laminar steady-state numerical model was developed to investigate the influence of an alternating current (ac) magnetic field during high-power full-penetration laser welding on the weld pool dynamics and weld cross section of a 20mm thick aluminium plate in flat position. Three-dimensional heat transfer, fluid dynamics including phase transition and electromagnetic field partial differential equations were solved iteratively with the commercial finite element software COMSOL Multiphysics using temperature-dependent material properties up to evaporation temperature. Thermocapillary convection at the weld pool surfaces, natural convection and latent heat of solidliquid phase transition were taken into account in this model. Solidification was modelled by the CarmanKozeny equation for porous media morphology. The ac magnet was mounted on the root side of the weld specimen. The magnetic field was aligned perpendicular to the welding direction. The flow pattern in the melt and thus also the temperature distribution were significantly changed by the application of oscillating magnetic fields. It was shown that the application of an ac magnetic field to laser beam welding allows for a prevention of the gravity drop-out. The simulation results are in good qualitative agreement with the experimental observations.
机译:建立了三维层流稳态数值模型,研究了大功率全穿透激光焊接中交流磁场对20mm厚铝板的熔池动态和焊接截面的影响。平坦的位置。使用商用有限元软件COMSOL Multiphysics,利用取决于温度的材料特性(直到蒸发温度),迭代地求解了三维传热,包括相变和电磁场偏微分方程在内的流体动力学。该模型考虑了熔池表面的热毛细管对流,自然对流和固液相变潜热。通过CarmanKozeny方程对凝固介质的多孔介质形态进行建模。交流磁体安装在焊接样品的根部。磁场垂直于焊接方向排列。通过施加振荡磁场,熔体中的流动模式以及温度分布发生了显着变化。结果表明,在激光束焊接中施加交流磁场可以防止重力下降。仿真结果与实验结果吻合良好。

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