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A Study on the Welding Current in Butt Joint P-GMA Welding with Acute Groove Angles

작은 그루브 각을 가지는 맞대기 P-GMA 용접에서의 용접전류에 관한 연구

  • Kim, Ryoon-Han (Facility Technology Group, LS Cable Ltd) ;
  • Na, Suck-Joo (Department of Mechanical Engineering, KAIST) ;
  • Kim, Cheol-Hee (Advanced Welding & Joining Technology Research Team, Korea Institute of Industrial Technology)
  • 김륜한 (LS전선 설비기술그룹) ;
  • 나석주 (한국과학기술원 기계공학과) ;
  • 김철희 (한국생산기술연구원 용접접합연구부)
  • Received : 2010.03.24
  • Accepted : 2010.05.07
  • Published : 2010.08.31

Abstract

The purpose of this paper is to propose a mathematical model of welding current for the P-GMAW by modifying the well known GMAW model. Welding power circuit is simply modeled as a RL electric circuit and solved as an ODE equation. The welding current depends on the joint shape, molten pool and welding parameters. To compare the molten pool effect to the welding current, CFD numerical simulation technique was adopted. Welding experiment is also conducted with the same welding parameters as used in numerical simulations to verify the proposed welding current model. The current model which is considered molten pool shape, is more fit to experiment result.

Keywords

References

  1. G. E. Cook : Robotic Arc Welding : Research in Sensory Feedback Control, IEEE Transactions on Industrial Electronics, 30-3 (1983), 252-268 https://doi.org/10.1109/TIE.1983.356736
  2. F. Matsuda, M. Ushio and Y. Tanaka : Metal Transfer Characteristics in Pulsed GMA Welding, Transactions of JWRI, 13-2 (1983), 9-17
  3. S. W. Kang, C. S. Yang and Y. T. Shin : A Study on the Effect of Groove Type on the Strength of Butt Welded Joint, Proceedings of Korean Welding and Joining Society, 2 (1995), 242-247 (in Korean)
  4. T. L. Teng, C. P. Fung and P. H. Chang : Effect of Weld Geometry and Residual Stresses on Fatigue in Butt-welded Joints, International Journal of Pressure Vessels and Piping, 79-1 (2002), 467-482 https://doi.org/10.1016/S0308-0161(02)00060-1
  5. C. H. Kim and S. J. Na : A Study of an Arc Sensor Model for Gas Metal Arc Welding with Rotating Arc Part 1: Dynamic Simulation of Wire Melting, Proceedings of the Institution of Mechanical Engineers Part B: Journal of Engineering Manufacture, 215-9 (2001), 1271-1279 https://doi.org/10.1243/0954405011519321
  6. C. H. Kim and S. J. Na : A Study on an Arc Sensor Model for Gas Metal Arc Welding with Rotating Arc Part 2 : Simulation of an Arc Sensor in Mechanically Rotating Gas Metal Arc Welding, Proceedings of the Institution of Mechanical Engineers Part B: Journal of Engineering Manufacture, 215-9 (2001), 1281-1288 https://doi.org/10.1243/0954405011519213
  7. W. S. Yoo : A Study on Sensors for Automatic Welding of 3-D Seam in Ship Hull Assembly, KAIST Doctoral Thesis (2004) (in Korean)
  8. H. Nomura : Sensors and Control Systems in Arc Welding, Chapman and Hall, (1984), 216-222
  9. M. H. Cho, Y. C. Lim and D. F. Farson : Simulation of Weld Pool Dynamics in the Stationary Pulsed Gas Metal Arc Welding Process and Final Weld Shape, Welding Journal, 85-12 (2006), 271-283
  10. J. H. Cho : An Analysis of Three-dimensional Molten Pool in Laser-GMA Hybrid Welding, KAIST Doctoral Thesis (2007) (in Korean)
  11. S. Kou and D. K. Sun : Fluid Flow and Weld Penetration in Stationary Arc Welds, Metallurgical and Materials Transaction A, 16-1 (1985), 203-213 https://doi.org/10.1007/BF02816047
  12. A. Kumar and T. Debroy : Calculation of Threedimensional Electromagnetic Force Field during Arc Welding, Journal of applied physics, 94-2 (2003), 1267-1277 https://doi.org/10.1063/1.1587006

Cited by

  1. Linear Mathematical Model for Seam Tracking with an Arc Sensor in P-GMAW Processes vol.17, pp.3, 2017, https://doi.org/10.3390/s17030591