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Multipass welding of thick section steels using autogenous CO2 laser welding and CO2 laser-MIG hybrid welding 被引量:1

Multipass welding of thick section steels using autogenous CO2 laser welding and CO2 laser-MIG hybrid welding
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摘要 Laser multipass welding techniques for thick section steels have been developed using a new type of UV combined narrow groove. The shape and sizes at the bottom of groove are determined by analyzing the plasma behavior using high speed photographic equipment. A stable autogenous CO2 laser welding process and greater penetration are generated at the root pass because of strong reduction of the plasma volume. According to the waveforms of welding current and arc voltage, and the interaction between the arc and the laser induced plasma, a suitable groove angle is obtained. Laser-double MIG hybrid welding process is studied and the optimum distances between the laser and two arcs are determined. By using autogenous CO2 laser welding, CO2 laser-MIG hybrid welding and laser-double MIG hybrid welding, 28 mm thick steel plates are welded with four passes. The welds produced are assessed by X-ray. No crack is found and there is only a small amount of pores. The experimental results show that the multipuss welding procedures proposed can realize the joining of thick section steels with high efficiency and good quality. Laser multipass welding techniques for thick section steels have been developed using a new type of UV combined narrow groove. The shape and sizes at the bottom of groove are determined by analyzing the plasma behavior using high speed photographic equipment. A stable autogenous CO2 laser welding process and greater penetration are generated at the root pass because of strong reduction of the plasma volume. According to the waveforms of welding current and arc voltage, and the interaction between the arc and the laser induced plasma, a suitable groove angle is obtained. Laser-double MIG hybrid welding process is studied and the optimum distances between the laser and two arcs are determined. By using autogenous CO2 laser welding, CO2 laser-MIG hybrid welding and laser-double MIG hybrid welding, 28 mm thick steel plates are welded with four passes. The welds produced are assessed by X-ray. No crack is found and there is only a small amount of pores. The experimental results show that the multipuss welding procedures proposed can realize the joining of thick section steels with high efficiency and good quality.
出处 《China Welding》 EI CAS 2012年第4期49-54,共6页 中国焊接(英文版)
关键词 CO2 laser welding thick section steels narrow groove PLASMA metal transfer CO2 laser welding, thick section steels, narrow groove, plasma, metal transfer
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  • 1Mahrle A, Beyer E. Hybrid laser beam welding - classifica- tion, characteristics, and applications. Journal of Laser Ap- plications, 2006, 18 ( 3 ) : 169 - 180.
  • 2Webster S, Kristensen J K , Petring D. Joining of thick sec- tion steels using hybrid laser welding. Ironmaking and Steel- making, 2008, 35 (7) : 496 - 504.
  • 3Hamadou M, Fabbro R, Coste F, et al. Experimental study of CO2 laser welding inside a groove -application to high thickness laser wehting. Journal of l,aser Applications, 2005, 17(3): 178-182.
  • 4Hu L H. A study on laser welding stability, join! micrnstruc- tures and properties of 10Ni3CrMoV thick steel. Shanghai: Shanghai Jiao Tong University, 2011. (in Chinese).
  • 5Stute U, Kling R , Hermsdorf J. Interaction between electri- cal arc and Nd: YAG laser radiation. Annals of the CIRP, 2007, 56(1) : 197 -200.
  • 6Hu B, Ouden G. Laser induced stabilisation of the welding arc. Science and Technology of Welding and Joining, 2005, lO (1): 76-81.

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