焊接
沟槽(工程)
材料科学
激光束焊接
气体保护金属极电弧焊
激光器
接头(建筑物)
图层(电子)
窄间隙
电阻焊
复合材料
热影响区
光学
结构工程
冶金
工程类
机械
物理
作者
Ruoyang Li,Tianjiao Wang,Chunming Wang,Fei Yan,Xinyu Shao,Xiyuan Hu,Jianmin Li
标识
DOI:10.1016/j.optlastec.2014.04.015
摘要
This paper details a new method that combines laser autogenous welding, laser wire filling welding and hybrid laser-GMAW welding to weld 30 mm thick plate using a multi-layer, multi-pass process. A "Y" shaped groove was used to create the joint. Research was also performed to optimize the groove size and the processing parameters. Laser autogenous welding is first used to create the backing weld. The lower, narrowest part of the groove is then welded using laser wire filling welding. Finally, the upper part of the groove is welded using laser-GMAW hybrid welding. Additionally, the wire feeding and droplet transfer behaviors are observed by high speed photography. The two main conclusions from this work are: the wire is often biased towards the side walls, resulting in a lack of fusion at the joint and the creation of other defects for larger groove sizes. Additionally, this results in the droplet transfer behavior becoming unstable, leading to a poor weld appearance for smaller groove sizes.
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