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Effect of bypass coupling on droplet transfer in twin-wire indirect arc welding

机译:旁路耦合对双线间接电弧焊接液滴传输的影响

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摘要

The bypass coupling technique was employed on twin-wire indirect arc welding (TWIAW) to improve its penetration. In bypass coupling twin-wire indirect arc welding, the cathode current can be adjusted by changing the cathode-wire feeding speed. The melting efficiency increases with the cathode-wire current. At the same total current, the deposition and dilution rates of twin-wire indirect arc welding with bypass coupling is twice and a third those of conventional gas metal arc welding, respectively, which are good for low-heat input welding, such as surfacing. High-speed camera observation indicated that the cathode droplet transfer mode changes from free transfer to contact transfer with the increase of the cathode-wire current. The repulsion force of the anode droplet to the cathode wire increases with the increase of the cathode-wire current.
机译:旁路耦合技术采用双线间接电弧焊接(TWIAW),以改善其渗透。 在旁路耦合双线间接电弧焊接中,可以通过改变阴极 - 送料速度来调节阴极电流。 熔化效率随着阴极线电流的增加。 在相同的总电流中,双线间接电弧焊接的沉积和稀释速率分别具有旁路耦合的两次和第三个,其常规气体金属弧焊的第三个是良好的低热输入焊接,例如表面。 高速摄像机观察表明,阴极液滴传输模式从自由转移变为随着阴极线电流的增加,接触转移。 随着阴极 - 线电流的增加,阳极液滴与阴极线的排斥力增加。

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