Interaction of both plasmas in CO2 laser-MAG hybrid welding of carbon steel

M. Kutsuna, Liang Chen
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引用次数: 63

Abstract

Researches and developments of laser and arc hybrid welding has been curried out since in 1978. Especially, CO2 laser and TIG hybrid welding has been studied for increasing the penetration depth and welding speed. Recently laser and MIG/MAG/Plasma hybrid welding processes have been developed and applied to industries. It was recognized as a new welding process that promote the flexibility of the process for increasing the penetration depth, welding speed and allowable joint gap and improving the quality of the welds. In the present work, CO2 Laser-MAG hybrid welding of carbon steel (SM490) was investigated to make clear the phenomenon and characteristics of hybrid welding process comparing with laser welding and MAG process. The effects of many process parameters such as welding current, arc voltage, welding speed, defocusing distance, laser-to-arc distance on penetration depth, bead shape, spatter, arc stability and plasma formation were investigated in the present work. Especially, the interaction of laser plasma and MAG arc plasma was considered by changing the laser to arc distance (=DLA).
碳钢CO2激光- mag复合焊接中两个等离子体的相互作用
激光与电弧复合焊接的研究与开发始于1978年。特别是研究了CO2激光与TIG复合焊接以提高熔深和焊接速度。近年来,激光和MIG/MAG/等离子复合焊接工艺得到了发展并应用于工业。提高焊深、焊接速度和允许接头间隙,提高焊缝质量,是一种提高工艺灵活性的新型焊接工艺。本文对碳钢(SM490)的CO2激光-MAG复合焊接进行了研究,并与激光焊接和MAG复合焊接工艺进行了比较,明确了复合焊接工艺的现象和特点。研究了焊接电流、电弧电压、焊接速度、离焦距离、激光到电弧距离等工艺参数对熔深、焊头形状、飞溅、电弧稳定性和等离子体形成的影响。特别考虑了激光等离子体与MAG电弧等离子体的相互作用,通过改变激光与电弧的距离(=DLA)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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