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Effects of Surface Active Elements on Weld Pool Fluid Flow and Weld Penetration in Gas Metal Arc Welding

机译:表面活性元素对气体保护金属弧焊中熔池流体流动和熔透性的影响

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摘要

This article presents a mathematical model simulating the effects of surface tension (Marangoni effect) on weld pool fluid flow and weld penetration in spot gas metal arc welding (GMAW). Filler droplets driven by gravity, electromagnetic force, and plasma arc drag force, carrying mass, thermal energy, and momentum, periodically impinge onto the weld pool. Complicated fluid flow in the weld pool is influenced by the droplet impinging momentum, electromagnetic force, and natural convection due to temperature and concentration gradients, and by surface tension, which is a function of both temperature and concentration of a surface active element (sulfur in the present study). Although the droplet impinging momentum creates a complex fluid flow near the weld pool surface, the momentum is damped out by an "up-and-down" fluid motion. A numerical study has shown that, depending upon the droplet's sulfur content, which is different from that in the base metal, an inward or outward surface flow of the weld pool may be created, leading to deep or shallow weld penetration. In other words, it is primarily the Marangoni effect that contributes to weld penetration in spot GMAW.
机译:本文提出了一个数学模型,该模型模拟了表面张力(Marangoni效应)对点焊气体电弧焊(GMAW)中焊缝池流体流动和焊缝熔深的影响。重力,电磁力和等离子弧拖曳力驱动的填充剂滴会周期性地撞击焊池,并带有质量,热能和动量。熔池中复杂的流体流动受液滴撞击动量,电磁力和温度和浓度梯度引起的自然对流的影响,还受表面张力的影响,表面张力是温度和表面活性元素(硫的含量)的函数。本研究)。尽管撞击液滴的动量会在焊池表面附近产生复杂的流体流,但动量会通过“上下”流体运动而减弱。数值研究表明,取决于熔滴的硫含量(与母材中的硫含量不同),可能会形成焊缝向内或向外的表面流动,从而导致深熔或浅熔。换句话说,主要是Marangoni效应有助于焊点在GMAW中的渗透。

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