The onset and absorption of ionisation in the vapour for laser keyhole welding

被引:0
|
作者
机构
[1] Dowden, John
来源
Dowden, J. | 2001年 / Institute for the Joining of Materials卷 / 13期
关键词
Absorption - Electric conductance - Energy transfer - Ionization - Temperature distribution;
D O I
暂无
中图分类号
学科分类号
摘要
The question of the transfer of energy from the laser beam to the work piece by inverse bremsstrahlung is considered in the case of laser keyhole welding and an equation is established for the conduction of this energy to the walls of the keyhole. From this the rate of transfer of power from the beam to the vapour by inverse bremsstrahlung and by conduction to the walls of the keyhole can be deduced, as well as the temperature distribution in the vapour in terms of the power of the laser and ambient conditions. It is found that there is a threshold below which no power is transferred by this mechanism, but that above this threshold there is a simple approximate relation between the incident power of the laser at a given cross section of the keyhole and the power absorbed by this mechanism at the keyhole wall. From these relations a simple model of the power absorbed by the work piece is constructed.
引用
收藏
相关论文
共 50 条
  • [21] Relationship between the keyhole laser welding and the plasma
    Berczeli, M.
    Buza, G.
    XXIII INTERNATIONAL CONFERENCE ON MANUFACTURING (MANUFACTURING 2018), 2018, 448
  • [22] Kinetic description of keyhole plasma in laser welding
    Dilthey, U
    Goumeniouk, A
    Lopota, V
    Turichin, G
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2000, 33 (21) : 2747 - 2753
  • [23] A numerical approach to modeling keyhole laser welding
    Georgios Pastras
    Apostolos Fysikopoulos
    Christos Giannoulis
    George Chryssolouris
    The International Journal of Advanced Manufacturing Technology, 2015, 78 : 723 - 736
  • [24] Transient model for the keyhole during laser welding
    Semak, VV
    Bragg, WD
    Damkroger, B
    Kempka, S
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1999, 32 (15) : L61 - L64
  • [25] Keyhole behaviour in high power laser welding
    Tsukamoto, S
    Kawaguchi, I
    Arakane, G
    Honda, H
    FIRST INTERNATIONAL SYMPOSIUM ON HIGH-POWER LASER MACROPROCESSING, 2003, 4831 : 251 - 256
  • [26] Numerical modeling of keyhole dynamics in laser welding
    Zhang, WH
    Zhou, J
    Tsai, HL
    FIRST INTERNATIONAL SYMPOSIUM ON HIGH-POWER LASER MACROPROCESSING, 2003, 4831 : 180 - 185
  • [27] Relationship of laser absorption to keyhole behavior in high power fiber laser welding of stainless steel and aluminum alloy
    Kawahito, Yousuke
    Matsumoto, Naoyuki
    Abe, Youhei
    Katayama, Seiji
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2011, 211 (10) : 1563 - 1568
  • [28] A numerical approach to modeling keyhole laser welding
    Pastras, Georgios
    Fysikopoulos, Apostolos
    Giannoulis, Christos
    Chryssolouris, George
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2015, 78 (5-8): : 723 - 736
  • [29] Keyhole behavior for deep penetration laser welding
    Fabbro, R
    Chouf, K
    ICALEO (R)'99: PROCEEDING OF THE LASER MATERIALS PROCESSING CONFERENCE, VOL 87, PTS 1 AND 2, 2000, 87 : D92 - D101
  • [30] Dynamics of keyhole and molten pool in laser welding
    Matsunawa, A
    Kim, JD
    Seto, N
    Mizutani, M
    Katayama, S
    JOURNAL OF LASER APPLICATIONS, 1998, 10 (06) : 247 - 254