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GMAW短路过渡液桥形状动态模型 被引量:2

Dynamic model of liquid bridge profile in short-circuit transfer of GMAW
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摘要 GMAW(熔化极气体保护焊)短路过渡中的液桥形状变化受诸多因素影响,是一个复杂的动态变化过程。基于能量最小原理,在一定的假设条件下,建立了GMAW短路过渡液桥形状动态变化的模型;结合焊接回路的动态模型,对液桥形状动态变化进行了仿真计算;并在此基础上,进一步进行了模型的试验验证和模型的误差分析。结果表明,建立的GMAW短路过渡液桥形状模型所描述的液桥轮廓动态变化趋势与试验结果比较吻合,实际焊接过程中的液桥形状还受到磁偏吹、焊接运动过程、熔池作用、保护气体流动等的影响,这些影响是造成液桥形状模型误差的主要因素。 Liquid bridge profile in short-circuit transfer of GMAW is affected by many factors,and is a complicated dynamic process.Dynamic liquid bridge profile in GMAW based on principle of minimizing energy has been modeled.Firstly,the energy of a small unit in liquid bridge tends to be minimized under surface tension force,electromagnetic force,and gravity force,so a dynamic liquid bridge profile in GMAW was modeled based on it.Secondly,dynamic behavior of liquid bridge has been simulated and analyzed when dynamic model of GMAW welding circuit in short-circuit period was associated.Finally,deviations of model were discussed in comparison with the high-speed photography experiment.The research indicates that the dynamic development tendency of liquid bridge profile simulated is consistent with the high-speed photography experimental result,and factors to cause model deviations are arc blow,welding movement,welding pool action and shielded gas lugging.
出处 《焊接学报》 EI CAS CSCD 北大核心 2008年第7期5-8,共4页 Transactions of The China Welding Institution
基金 国家自然科学基金资助项目(50775135) 上海市科委攻关项目(061111034) 上海市教委重点项目(06zz79)
关键词 熔化极气体保护焊 短路过渡液桥 能量最小原理 动态模型 GMAW liquid bridge of short circuit transfer minimizing energy principle dynamic model
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参考文献6

  • 1Jonsson P G, Szekely J, Choo R T C, et al. Mathematical models of transport phenomena associated with arc-welding processes: a survey [J]. Modeling and Simulation in Materials Science and Engineering, 1994,2(5) :995 - 1016. 被引量:1
  • 2王方,侯文考,胡仕新.熔化极气体保护焊的仿真系统[J].焊接学报,2003,24(1):35-39. 被引量:6
  • 3Chio S K, Ko S H, Yoo C D, et al .Dynamic simulation of metal transfer in GMAW, Part 2: Short-circuit transfer modes [ J]. Welding Journal, 1998,77( 1 ) :45s - 51s. 被引量:1
  • 4Maruo H, Hirata Y, Goto N. Bridging transfer phenomena of conductive pendent drop:The effects of electromagnetic pinch force on bridging transfer[J]. Quarterly Journal of JWS, 1992,10(2) :43 - 50. 被引量:1
  • 5Chio S K, Lee K H, Yoo C D, et al. Analysis of metal transfer through equilibrium shape of pendent drop in GMAW[J]. Quarterly Journal of Japan Welding Society, 1996,14(2) :243 - 247. 被引量:1
  • 6Orszagh P, You C K, Kohsuke H. Short-circuiting transient phenomena in GMA/CO2 welding: Through-the-wire sensor for feedback torch height control[J]. Transactions of Journal Wehting Research Institute of Osaka University, 1997,26( 1 ) :49 - 67. 被引量:1

二级参考文献11

  • 1American Welding Soclety, U. S. Department of Energy. Vision for Welding Industry [ R]. Miami : AWS, 1999. 被引量:1
  • 2Nogi K. National project for welding simulation [ J ] . Journal of the Japan Welding Society,2001,70 ( 2 ) :42 -- 61. 被引量:1
  • 3Wang F,Hou W K,Hu S J,et al. Numerical simulation of metal transfer in gas metal arc welding of sheet metals [ C]. Proceedings of American Welding Society Detroit Section 10th International Sheet Metal Welding Conference, Sterling Heights, Michigan, US,2002,15 -- 17. 被引量:1
  • 4Richardson M , Bucknall P W , Stares I. The influence of power source dynamics on wire melting rate in pulsed GMA welding [J]. Welding Journal,1994,73 (2) :32s -37s. 被引量:1
  • 5Quinn T P , Madigan R B , Siewert T A. An electrode extension model for gas metal are welding [J]. Welding Journal, 1994,73(10) :241s --248s. 被引量:1
  • 6Kim J W,Na S J. A study on prediction of welding current in gas metal arc welding, Part 1 : Modeling of welding current in response to change of tip-to-workpiece distance [ J]. Proceedings of the Institution of Mechanical Engineers Part B-Journal of Engineering Manufacture, 1991,205( 1 ) :59 -63. 被引量:1
  • 7Choi J H,I,ee J Y,Yoo C D. Simulation of dynamic behavior in a GMAW system [ J ]. Welding Journal, 2001,80 ( 10 ) : 239s --245 s. 被引量:1
  • 8Hirt C W, Nichols B D. Volume of fluid (VOF) method for the dynamics of free boundaries [J]. Journal of Computational Physics, 1981,39 ( 1 ) :201 - 225. 被引量:1
  • 9Ohshima K . Stability of pulsed current consumable dectrode transfer by power source with periodically varying nonlinear characteristic [J]. Journal of the Japan Welding Society, 1982,51(2) :91 -97. 被引量:1
  • 10Kim Y-S, Eagar T W. Analysis of metal transfer in gas metal arc welding [J ]. Welding Journal, 1993,72 ( 6 ) : 269s - 278 s. 被引量:1

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