材料科学
焊接
锁孔
激光束焊接
激光器
喷嘴
Nd:YAG激光器
横截面
多孔性
气体保护金属极电弧焊
热影响区
复合材料
钨极气体保护焊
熔池
光学
机械工程
电弧焊
结构工程
物理
工程类
作者
Kenichi Kamimuki,Takashi Inoue,Kozo Yasuda,Mikio Muro,Tokuhiro Nakabayashi,Akira Matsunawa
摘要
In the Nd:yttrium–aluminum–garnet (YAG) laser welding of thick plates, reduction of porosity and monitoring the keyhole/molten metal behavior are very important issues to assure the high quality welding. The authors applied a side gas flow to prevent the porosity in the bead on plate welding with 6 kW Nd:YAG laser equipment. At the same time, a reflected Ar+ laser in the same axis as the Nd:YAG laser beam and the light emission from the weld were measured as monitoring signals. Under the optimum side gas condition, pores in the weld metal could significantly decrease, the penetration depth increased slightly, and the bead width became narrower. Under that condition, moreover, the generation of spatters was quite few. An acceptable limit of the transverse misalignment of the side gas nozzle position was about 1 mm. The misalignment could be detected by using the above mentioned monitoring signals.
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