Suppression of welding defects in deep penetration CO2 laser welding

被引:0
|
作者
Tsukamoto, S [1 ]
Kawaguchi, I [1 ]
Arakane, G [1 ]
Kamata, T [1 ]
Maekawa, K [1 ]
机构
[1] Natl Res Inst Met, Joining & Interface Res Stn, Tsukuba, Ibaraki 305, Japan
关键词
D O I
暂无
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Characteristics of deep penetration welding have been investigated using 20 kW CO2 laser facility. Formation mechanism of the porosity has also been discussed. The porosity forms most significantly for upper focussing conditions, under which the low power density of the laser beam tends to incline the keyhole front wall at the root. The laser beam reflected at the inclined keyhole front superheats the molten metal, resulting in forming the porosity at the root. The porosity is not observed in N-2 shield welding, although large N-plasma is formed during welding. The suppression might be caused by periodical change in the heat input due to periodical plasma formation and dissolution of the shielding gas in the molten pool. Pulse welding of low frequency is effective in suppressing the porosity due to promoting the periodical molten metal flow.
引用
收藏
页码:C7 / C15
页数:9
相关论文
共 50 条
  • [41] Effects of processing parameters on underfill defects in deep penetration laser welding of thick plates
    Zhang, Mingjun
    Tang, Kun
    Zhang, Jian
    Mao, Cong
    Hu, Yongle
    Chen, Genyu
    [J]. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2018, 96 (1-4): : 491 - 501
  • [42] Effects of processing parameters on underfill defects in deep penetration laser welding of thick plates
    [J]. Zhang, Mingjun (hnuzmj@163.com), 1600, Springer London (96): : 1 - 4
  • [43] Effects of processing parameters on underfill defects in deep penetration laser welding of thick plates
    Mingjun Zhang
    Kun Tang
    Jian Zhang
    Cong Mao
    Yongle Hu
    Genyu Chen
    [J]. The International Journal of Advanced Manufacturing Technology, 2018, 96 : 491 - 501
  • [44] Study on prevention of welding defects in high power CO2 laser materials processing
    Matsumoto, T
    Fukuda, N
    Kondo, Y
    Ohmori, A
    Inoue, K
    Arata, Y
    [J]. JOURNAL OF LASER APPLICATIONS, 1999, 11 (06) : 258 - 262
  • [45] CO2 WELDING WITH WELDING CONDITIONS PROGRAMMED
    POTAPEVS.AG
    LAVRISHCHEV, VY
    DEINEKO, MP
    [J]. AUTOMATIC WELDING USSR, 1972, 25 (04): : 45 - +
  • [46] Study on prevention of welding defects in high power CO2 laser materials processing
    Matsumoto, T
    Fukuda, N
    Kondo, Y
    Ohmori, A
    Arata, Y
    [J]. LASER MATERIALS PROCESSING CONFERENCE, PTS 1 & 2: ICALEO '97, 1997, : G272 - G281
  • [47] Coaxial monitoring and penetration control in CO2 laser welding (I) - Penetration status characteristics and coaxial monitoring
    Zhang, Xu-Dong
    Chen, Wu-Zhu
    Liu, Chun
    Guo, Jing
    [J]. Hanjie Xuebao/Transactions of the China Welding Institution, 2004, 25 (04): : 1 - 4
  • [48] Thermocapillary mechanism of deep penetration in laser beam welding
    Seidgazov R.D.
    [J]. Mathematical Models and Computer Simulations, 2011, 3 (2) : 234 - 244
  • [49] A stochastic model of the deep penetration laser welding of metals
    Kapadia, P
    Solana, P
    Dowden, J
    [J]. LASER MATERIALS PROCESSING CONFERENCE, PTS 1 & 2: ICALEO '97, 1997, : G54 - G62
  • [50] Dynamical description of the keyhole in deep penetration laser welding
    Fabbro, R
    Chouf, K
    [J]. JOURNAL OF LASER APPLICATIONS, 2000, 12 (04) : 142 - 148