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Characteristics analysis of droplet transfer in laser-MAG hybrid welding process

机译:激光-MAG混合焊接工艺中熔滴转移的特性分析

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摘要

The droplet transfer, plasma morphology and droplet morphology of laser arc hybrid welding process are collected and analyzed using high speed camera. The force magnitude and acceleration of motion droplets in the arc space are calculated by the image processing and mathematical calculations. The value and distribution of the recoil force from the metal vapor on droplets are calculated. The results show that the globular transfer mode corresponds to the welding current is approximate 180 A; the streaming transfer mode corresponds to the welding current is approximate 200 A. The laser has a compress effect on the arc, and the compression on the surface of the weld pool is stronger. The acceleration of the droplet detachment from wire is 70 m/s2and 50 m/s2for arc welding and laser arc hybrid welding separately. In the actual welding process, the reaction force of metal vapor on molten droplets is very small, when the distance between droplet and keyhole in the surface of the weld pool is 3 mm. The pressure difference on the surface between upper and lower of the droplet is great, which results the droplet coalescence and the transfer frequency slows down.
机译:收集并分析了激光电弧混合焊接过程中的液滴转移,等离子体形态和液滴形态。通过图像处理和数学计算来计算弧空间中运动液滴的力大小和加速度。计算了金属蒸气在液滴上的反冲力的值和分布。结果表明,与焊接电流相对应的球状转移模式约为180A。流传输模式对应的焊接电流约为200 A,激光对电弧具有压缩作用,对熔池表面的压缩作用更强。焊丝熔滴分离的加速度分别为70 m / s2和50 m / s2,分别用于电弧焊和激光电弧混合焊接。在实际的焊接过程中,当熔池表面的熔滴与锁孔之间的距离为3mm时,金属蒸气对熔滴的反作用力很小。液滴上下之间的表面压力差很大,导致液滴聚结并且转移频率变慢。

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