182
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

A new algorithm on welding process of T-shaped plates in ship hull structure to minimize distortion based on thermal simulation

, &
Pages 489-497 | Received 28 Apr 2013, Accepted 28 Jan 2014, Published online: 26 Feb 2014

References

  • Brian R, Salerno M, Basu R, Nash, Pegg N, Smith J. 2008. Welding distortion analysis of hull blocks using equivalent load method based on inherent strain. Washington (DC): Ship Structure Committee. Report SSC – 453.
  • Brust FW, Wilkowski G, Shim DJ, Zhang T, Kurth E. 2010. Welding distortion control methods and applications of weld modelling. Proceedings of the ASME Pressure and Piping Conference; New York. 587–596.
  • Deng D, Murakawa H. 2004. Theoretical prediction of welding distortion considering positioning and gap between parts. Int J Offshore Polar Eng. 14(2):138–144.
  • Deng D, Murakawa H, Liang W. 2007. Numerical simulation of welding distortion in large structures. Comput Methods Appl Mech Eng. 196(45):4613–4627.
  • Deng D, Murakawa H, Liang W. 2008. Prediction of welding distortion in a curved plate structure by means of elastic finite element method. J Mater Process Technol. 203(1–3):252–266.
  • Feng Z. 2005. Processes and mechanisms of welding residual stress and distortion. Cambridge (UK): WoodHead Pub.
  • Gannon L. 2011. Effect of welding residual stress and distortion on ship hull structural performance [thesis]. Nova Scotia (Canada): Dalhousie University.
  • Gannon L, Liu Y, Pegg N, Smith M. 2010. Effect of welding sequence on residual stress and distortion in flat-bar stiffened plates. Marine Struct. 23(3):385–404.
  • Gannon L, Liu Y, Pegg N, Smith MJ. 2013. Effect of three-dimensional welding-induced residual stress and distortion fields on strength and behavior of flat-bar stiffened panels. Ships Offshore Struct. 8(5):565–578.
  • Goldak J, Chakaravarti A, Bibby M. 1984. A new finite element model for welding heat sources. Metallurgical Trans B. 15(2):299–305.
  • Hardikar KD, Nidgalkar DJ, Inamdar. KH 2012. Techniques to ensure minimum distortion of an assembly of metal parts induced due to the process of welding used for an assembly. Int J Sci Eng Res. 3(2):145–148.
  • Hernandez Arriaga I. 2009. Welding sequence analysis [thesis]. Kraków (Poland): AGH University of Science and Technology. Faculty of Mechanical Engineering and Robotics.
  • Kenno SY, Das S, Kennedy J, Rogge R, Gharghouri M. 2010. Distribution of residual stresses in stiffened plates with one and two stiffeners. Ships Offshore Struct. 5(3): 211–225.
  • Masubuchi K. 1959. New approach to the problem on residual stress and deformation due to welding. Transportation Tech Res Inst Rep. 8(12):247–364.
  • Messler RW. 1999. Principles of welding. New York: John Wiley & Sons.
  • Michaleris P, De Biccari A. 1997. Prediction of welding distortion. Welding J Including Welding Res Suppl. 76(4):172–179.
  • Ozcatalbas Y, Ibrahim Vural H. 2009. Determination of optimum welding sequence and distortion forces in steel lattice beams. J Mater Proc Technol. 209(1):599–604.
  • Raju N, Suresh S, Jebaseelan Davidson D, Ramakalyan A. 2009. Analysis of angular deformation in a full penetration un-symmetrical tee joint. J. Manufacturing Ind Eng. 8(4):58–61.
  • Schenk T. 2011. Modelling of welding distortion the influence of clamping and sequencing [thesis]. Delft (The Netherlands): Delft University of Technology. Materials Science and Engineering.
  • Taniguchi C. 1972. Out-of-plane distortion caused by fillet welds in aluminum [thesis]. Cambridge (MA): Massachusetts institute of technology, Department of Ocean Engineering.
  • Tsai CL, Park SC, Cheng WT. 1999. Welding distortion of a thin-plate panel structure, research development. Welding Res Suppl. 78(5):156–165.
  • Voutchkov I, Kean AJ, Bhaskar A, Olsen TM. 2005. Weld sequence optimization: the use of surrogate models for solving sequential combinatorial problems. Comput Methods Appl Mech Eng. 194(30):3535–3551.
  • Watanabe M, Satoh K. 1958. Fundamental study on buckling of thin steel plate due to bead-welding. J Jpn Welding Soc. 27(6):313–320.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.