Prediction of arc, weld pool and weld properties with a desktop computer model of metal–inert-gas welding

被引:0
|
作者
Anthony B. Murphy
David G. Thomas
机构
[1] CSIRO Manufacturing,
[2] CSIRO Data61,undefined
来源
Welding in the World | 2017年 / 61卷
关键词
Arc physics; MIG welding; Mathematical models; Weld shape; Aluminium alloys; Fillet welds;
D O I
暂无
中图分类号
学科分类号
摘要
A three-dimensional computational model of metal–inert-gas welding, which includes the arc, wire and workpiece self-consistently, is presented. It takes into account the phenomena including (1) the motion of the arc relative to the workpiece; (2) the energy, momentum and mass transported by droplets; (3) flow in the weld pool and deformation of its surface; (4) effects of metal vapour and (5) mixing of the wire and workpiece alloys. A graphical user interface has been added. The model predicts the depth and shape of the weld and heat-affected zone and arc and weld pool properties. Thermal histories of the workpiece, required to calculate residual stress and microstructure, are also predicted. Results for welding of aluminium alloy sheets in lap fillet geometry are presented. It is found that the arc temperature is relatively low, due to the high concentration of aluminium vapour, which radiates strongly. The droplets are predicted to mix fairly thoroughly in the weld pool, with the flow in the weld pool driven downwards by the droplet momentum. The orientation of the wire electrode strongly influences the shape and depth of the weld, with a decreased work angle (i.e. further from vertical) leading to a decreased reinforcement height and deeper penetration.
引用
收藏
页码:623 / 633
页数:10
相关论文
共 50 条
  • [41] Three-dimensional turbulent weld pool convection in gas metal arc welding process
    Jaidi, J
    Dutta, P
    SCIENCE AND TECHNOLOGY OF WELDING AND JOINING, 2004, 9 (05) : 407 - 414
  • [42] Numerical analysis of weld pool geometry in globular-transfer gas metal arc welding
    Xu G.
    Wu C.
    Frontiers of Materials Science in China, 2007, 1 (1): : 24 - 29
  • [43] A self-consistent three-dimensional model of the arc, electrode and weld pool in gas-metal arc welding
    Murphy, Anthony B.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2011, 44 (19)
  • [44] Numerical simulation of arc, metal transfer and its impingement on weld pool in variable polarity gas metal arc welding
    Ikram, Adeel
    Chung, Hyun
    JOURNAL OF MANUFACTURING PROCESSES, 2021, 64 : 1529 - 1543
  • [45] Dynamic behavior sensing of weld pool surface oscillation and deformation in pulsed tungsten inert gas arc welding
    Zhang, Gang
    Fan, Ding
    Shi, Yu
    Huang, Jian-Kang
    Shanghai Jiaotong Daxue Xuebao/Journal of Shanghai Jiaotong University, 2014, 48 : 71 - 74
  • [46] Machine vision system for online weld pool observation of gas metal arc welding processes
    Reisgen, U.
    Purrio, M.
    Buchholz, G.
    Willms, K.
    WELDING IN THE WORLD, 2014, 58 (05) : 707 - 711
  • [47] Machine vision system for online weld pool observation of gas metal arc welding processes
    U. Reisgen
    M. Purrio
    G. Buchholz
    K. Willms
    Welding in the World, 2014, 58 : 707 - 711
  • [48] Weld pool dynamics and the formation of ripples in 3d gas metal arc welding
    Hu, J.
    Guo, H.
    Tsai, H. L.
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION 2007, VOL 8, PTS A AND B: HEAT TRANSFER, FLUID FLOWS, AND THERMAL SYSTEMS, 2008, : 1003 - 1011
  • [49] Weld pool dynamics and the formation of ripples in 3D gas metal arc welding
    Hu, J.
    Guo, H.
    Tsai, H. L.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2008, 51 (9-10) : 2537 - 2552
  • [50] Influence of reduced pressure on arc and weld pool properties in TIG welding
    Han, Xiaohui
    Cui, Xuefei
    Wu, Yongshou
    Chen, Ji
    Zhang, Guangda
    Wu, Chuansong
    SCIENCE AND TECHNOLOGY OF WELDING AND JOINING, 2024, 29 (02) : 143 - 152