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Welding process of consumable double electrode with a single arc GMAW

机译:单弧GMAW消耗性双电极的焊接工艺

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Double-electrode gas metal arc welding (DE-GMAW) was recently developed to control the current through the workpiece at a desired level when the welding productivity was increased. A novel welding method entitled consumable double electrode with a single arc GMAW (consumable DESA-GMAW) was proposed to further enhance the welding productivity by replacing the non-consumable electrode in DE-GMAW with a consumable electrode. The consumable DESA-GMAW system can work stably with appropriate welding parameters. In this paper, the effects of control variables including the voltage of the main power source and slave power source as well as the wire feed speed of the main wire and bypass wire on the current distribution between the workpiece and bypass wire were studied. The effects of the variables on arc behavior and metal transfer process were also studied. The ratio of the current through the bypass wire to the main wire can be increased by decreasing the main power source voltage, increasing the slave power source, or increasing the main wire feed speed. However, a higher ratio obtained by modifying a single control parameter may negatively influence the regular metal transfer process.The ratio of the current through the workpiece to the main filler wire can be most effectively decreased with a combination of relatively lower main power source voltage and higher slave power source voltage.
机译:最近开发了双电极气体保护金属电弧焊(DE-GMAW),以在提高焊接生产率时将通过工件的电流控制在所需水平。为了通过将DE-GMAW中的非消耗性电极替换为消耗性电极,提出了一种新的焊接方法,称为单弧GMAW消耗性双电极(消耗性DESA-GMAW)。耗材DESA-GMAW系统可以在适当的焊接参数下稳定运行。本文研究了主电源和从电源的电压以及主线和旁路线的送丝速度对工件和旁路线之间电流分布的控制变量的影响。还研究了变量对电弧行为和金属转移过程的影响。可以通过降低主电源电压,增加从电源或增加主线进给速度来增加通过旁路线与主线的电流比。但是,通过修改单个控制参数获得的较高比率可能会对常规的金属传输过程产生负面影响。通过相对较低的主电源电压和从电源电压较高。

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