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Heat and Metal Transfer In Gas Metal Arc Welding Using Argon and Helium

机译:氩和氦气气体保护电弧焊中的热和金属传递

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This article describes a theoretical investigation on the arc parameters and metal transfer in gas metal arc welding (GMAW) of mild steel using argon and helium shielding gases. Major differences in the predicted arc parameters were determined to be due to large differences in thermophysical properties. Various findings from the study include that an arc cannot be struck in a pure helium atmosphere without the assistance of metal vapor, that a strong electromagnetic cathode force affects the fluid flow and heat transfer in the helium arc, providing a possible explanation for the experimentally observed globular transfer mode and that the tapering of the electrode in an argon arc is caused by electron condensation on the side of the electrode.
机译:本文介绍了使用氩气和氦气保护气体对低碳钢进行气体保护电弧焊(GMAW)中的电弧参数和金属转移的理论研究。确定了预测电弧参数的主要差异是由于热物理性质的较大差异。该研究的各种发现包括:如果没有金属蒸气的帮助,则不能在纯氦气气氛中产生电弧;强大的电磁阴极力会影响氦气电弧中的流体流动和传热,这为实验观察到的现象提供了可能的解释。球形转移模式,以及在氩弧中电极变细是由电极侧的电子冷凝引起的。

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