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Metal Transfer and Arc Plasma in Gas Metal Arc Welding

机译:气体金属电弧焊中的金属转移和电弧等离子体

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This article analyzes the transient complex heat transfer and fluid flow in molten metal and arc plasma during the gas metal arc welding process. The model predicts the formation, growth, detachment, and transfer of droplets from the tip of a continuously fed electrode under the influences of several competing forces including gravity, electromagnetic force, arc pressure, plasma shear stress, and surface tension. Simulations were conducted for five different current levels to study the effects of current on the distributions of temperature, velocity, pressure, and current density in the droplet and/or the arc plasma. Agreement between the simulated results and published experimental data was obtained.
机译:本文分析了在气体金属电弧焊过程中瞬态复杂的热传递以及熔融金属和电弧等离子体中的流体流动。该模型预测了在重力,电磁力,电弧压力,等离子剪切应力和表面张力等多种竞争力的影响下,连续馈电电极尖端的液滴的形成,生长,分离和转移。针对五个不同的电流水平进行了仿真,以研究电流对液滴和/或电弧等离子体中温度,速度,压力和电流密度分布的影响。模拟结果与公开的实验数据之间取得了一致性。

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