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Coupling mechanism of laser and arcs of laser-twin-arc hybrid welding and its effect on welding process

机译:双弧混合焊接中激光与电弧的耦合机理及其对焊接过程的影响

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摘要

Laser-twin-arc hybrid welding, which combines the techniques of laser welding and twin-arc welding, is an emerging welding technology. In this study, synchronous information including spectral signal, high-speed photography and electrical signal is used to explore the physical interaction between the arcs and the laser of alternate burning in laser-twin-arc hybrid welding process, and the effect of the combined arc/laser heat source on the welding process was analyzed. The results indicated that the laser provides a conductive, stable plasma channel for the arcs, which can influence the arc shape, slow down droplet transfer, reduce resistivity and stabilize arcs. Electron temperature of hybrid arc plasma is from 7000 K to 17000 K, which is significantly influenced by laser parameters. The laser-twin-arc hybrid welding acquires deeper penetration and wider HAZ than with the twin-arc welding alone.
机译:结合了激光焊接和双电弧焊接技术的激光双弧混合焊接是一种新兴的焊接技术。在这项研究中,包括光谱信号,高速摄影和电信号在内的同步信息被用于探索电弧-激光-电弧混合焊接过程中电弧与交替燃烧激光之间的物理相互作用,以及复合电弧的影响。 /激光热源对焊接过程进行了分析。结果表明,激光为电弧提供了一个导电,稳定的等离子通道,可以影响电弧形状,减慢液滴转移,降低电阻率并稳定电弧。混合电弧等离子体的电子温度为7000 K至17000 K,这受激光参数的影响很大。与单独的双弧焊相比,激光-双弧混合焊具有更深的熔深和更宽的热影响区。

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