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Analysis and Improvement of Metal Transfer Behaviors in Consumable Double-Electrode GMAW Process

机译:消耗性双电极GMAW工艺中金属转移行为的分析与改进

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Consumable double-electrode gas metal arc welding (consumable DE-GMAW) is the efficient improvement of DE-GMAW. Due to the variety of coupled arc and metal transfer behaviors, this paper applies static force balance theory to analyze the changes in the forces acting on the main and bypass droplets separately. For main torch, the bypass arc changes the forces affecting on the main droplet, and the main metal transfer becomes more desirable. For bypass torch, with direct current electrode negative (DCEN) polarity, the volume of droplet is big and not easily transfers to the weld pool. In order to improve the bypass metal transfer, a method has been proposed which adds CO2 to pure argon shielding gas to change the forces affecting on the bypass droplet. Then, the welding experiment is carried out to test the effectiveness of this method. It is found that bypass droplet transfers easily and the diameter of bypass droplet is decreased significantly. Also a good weld appearance is acquired.
机译:消耗性双电极气体保护金属电弧焊(消耗性DE-GMAW)是DE-GMAW的有效改进。由于电弧和金属传递耦合行为的多样性,本文应用静态力平衡理论来分别分析作用在主液滴和旁路液滴上的力的变化。对于主焊炬,旁路电弧会改变作用在主熔滴上的力,因此更希望进行主金属转移。对于旁路焊枪,直流电极负极(DCEN)极性大,焊滴量大,不易转移到焊池中。为了改善旁路金属的转移,已经提出了一种方法,该方法将CO 2添加到纯氩气保护气体中以改变影响旁路液滴的力。然后,进行焊接实验以验证该方法的有效性。发现旁路液滴易于转移并且旁路液滴的直径显着减小。还获得了良好的焊接外观。

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