Henry Granjon Prize Competition 2005 “Design and structural integrity-Localized Thermal Tensioning Technique to Prevent Buckling Distortion
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  • 作者:J. Li (1)
  • 关键词:GTA welding ; Arc welding ; Gas shielded arc welding ; Titanium alloys ; Buckling ; Deformation ; Distortion ; Residual stresses ; Plastic deformation ; Process parameters ; Process conditions ; Temperature distribution ; Finite element analysis ; Computation ; Mathematical models ; Reference lists
  • 刊名:Welding in the World
  • 出版年:2005
  • 出版时间:November 2005
  • 年:2005
  • 卷:49
  • 期:11-12
  • 页码:4-14
  • 参考文献:1. China Welding Society, Welding Handbook, 2nd edition, No. 3, Beijing: China Machine Press, 2001, (in Chinese).
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    20. Li J., Guan Q., Shi Y.W., / et al.: Studies on characteristics of temperature field during GTAW with a trailing heat sink for titanium sheet, Journal of Materials Processing Technology, 147, 2004, pp. 328-35. CrossRef
    21. Li J., Guan Q., Shi Y.W., / et al.: A stress and distortion mitigation technique for welding titanium alloy thin sheet, Science and Technology of Welding and Joining (in press).
  • 作者单位:J. Li (1)

    1. School of Materials Science and Engineering, Beijing University of Technology, P. R. China
  • ISSN:1878-6669
文摘
An in process distortion mitigation method, localized thermal tensioning technique, also named DC-LSND welding technique, has been developed by introducing a trailing heat sink during conventional GTAW. The thermal elasto-plastic finite element analysis procedure was developed to quantitatively study the effect of heat sink on the thermomechanical process during welding and to find out the stress and distortion controlling mechanism of the proposed technique. Welding trials were also conducted to verify the effectiveness of the technique and the validity of the finite element model. Finally, effects on controlling results of process parameters were studied for heat sink; i.e., the distance between heat sink and welding arc (d) and cooling intensity of heat sink (h). Based on these studies, the methods to determine optimal heat sink parameters are presented for engineering applications.

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