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The study of surface active element on weld pool development in A-TIG welding

机译:表面活性元素对A-TIG焊接熔池发展的影响

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A 3D mathematical model was developed to simulate the weld pool development in a moving A-TIG weld pool with different oxygen and sulfur concentrations. It is shown that the surface active elements - oxygen and sulfur, which change the temperature coefficient of surface tension from a negative value to a positive one, can cause significant changes in fluid flow patterns and the weld penetration. When surface active element content increases, the weld penetration and depth/width ratio increase sharply and then remain nearly a constant. Positive temperature coefficient of surface tension dominates the fluid flow and the weld pool is narrow and deep. The further increasing surface active element content leads to an inappreciable difference in the weld pool size and shape when the oxygen content increases beyond 280 ppm and sulfur content beyond 125 ppm. Positive and negative temperature coefficients of surface tension co-exist in the weld pool when surface active element content is less than the critical value. The fluid flows in the weld pool change apparently with different surface active element. Depending upon the oxygen and sulfur concentrations, three, one or two vortexes that have different positions, strength and directions may be found in the weld pool. The vortexes with opposite direction caused by positive temperature coefficient of surface tension can efficiently transfer the thermal energy from the arc, creating a deep weld pool.
机译:开发了一个3D数学模型来模拟在移动的A-TIG焊池中氧气和硫的浓度不同时焊缝的发展。结果表明,表面活性元素-氧和硫将表面张力的温度系数从负值改变为正值,会导致流体流动方式和焊缝熔深的显着变化。当表面活性元素含量增加时,焊缝熔深和深度/宽度比急剧增加,然后几乎保持恒定。表面张力的正温度系数主导着流体流动,焊缝又窄又深。当氧含量增加到280 ppm以上,硫含量超过125 ppm时,表面活性元素含量的进一步增加会导致焊池尺寸和形状的差异不明显。当表面活性元素含量小于临界值时,表面张力的正负温度系数会同时存在于焊缝中。焊池中的流体流动明显随表面活性元素的不同而变化。根据氧气和硫的浓度,在焊接熔池中可能会发现三个,一个或两个具有不同位置,强度和方向的涡流。由表面张力的正温度系数引起的方向相反的涡流可以有效地转移电弧产生的热能,从而形成深熔池。

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