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首页> 外文期刊>International Journal of Thermal Sciences >Investigation of heat transfer and fluid flow in high current GTA welding by a unified model
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Investigation of heat transfer and fluid flow in high current GTA welding by a unified model

机译:统一模型研究高电流GTA焊接中传热和流体流动的研究

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摘要

This research is aimed to understand the heat transfer and fluid flow of the arc plasma and weld pool with a significant deformation of the weld pool surface during high current gas tungsten arc welding (GTAW). A unified model including the tungsten electrode, arc plasma and the weld pool of low carbon steel is developed by presetting a free surface deformation from the experimental observations. Buoyance, Lorentz force, plasma drag force and Marangoni force are taken into account to investigate the weld pool dynamics with a great depressed free surface. Heat flux, current density, Marangoni force and plasma drag force at the weld pool surface are presented to understand the heat and momentum transfer from the arc plasma to the weld pool. It is found that the distributions of the heat flux and current density as well as temperature at the depressed weld pool surface are double-peak profiles; the molten metal flow of the weld pool with severe surface depression are determined by the plasma drag force rather than the Marangoni force. The effect of the Lorentz force is more important than that of the buoyance, but weaker than the Marangoni force. The results are consistent with the existing results of both the experiment and the theory.
机译:该研究旨在了解电弧等离子体和焊接池的传热和流体流动,在高电流气体钨弧焊(GTAW)期间具有焊接池表面的显着变形。通过从实验观察结果预设自由表面变形,开发了包括钨电极,电弧等离子体和低碳钢焊池的统一模型。考虑到浮现,洛伦兹力,等离子体拖力和玛龙尼力,以调查焊接池动态与郁闷的自由面。焊接池表面的热通量,电流密度,玛甘尼力和等离子拖曳力,以了解从电弧等离子体到焊接池的热量和动量。发现热通量和电流密度的分布以及凹陷焊接池表面的温度是双峰型材;具有严重表面凹陷的焊接池的熔融金属流量由等离子体拖曳力而不是Marangoni力确定。洛伦兹力的效果比浮动的效果更重要,但弱于玛龙尼力。结果与实验和理论的现有结果一致。

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