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Prediction Models on Distribution of Inherent Strains in T Type Welding Structure

Prediction Models on Distribution of Inherent Strains in T Type Welding Structure
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摘要 A fundamental theory for the analysis of residual welding stresses and deformation based on the inherent strain distribution along the welded joint is introduced. The method of predicting maximum hardness Hv(y, z) and maximum inherent strain gmax is given. The model T.E.P-Tav-hardness calculation is proposed to predict distribution of inherent strains in T type welding structure. By T.E.P-Tav-hardness calculation, distribution of longitudinal inherent strains can be predicted in T type welding structure, and calculation and experimental results are consistent.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2003年第z1期202-204,共3页 材料科学技术(英文版)
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参考文献5

  • 1[1]Koichi Masubuchi: Analysis of Welded Structures, International Series on Materials Science and Technology., 1986, 33.
  • 2[2]T.Terasaki and T.Akiyama: ASME Journal of Engineering for Industry, 1995, 117(3).
  • 3[3]T.Terasaki and T.Akiyama: Residual Stress in Vacuum Evaporated Film, A Hen/Transactions of the Japan, Part A., 1993,59(567).
  • 4[4]R.H.Michael and V.N. Drew: Inherent Strain Method for Residual Stress Determination and Its Application to A Long Welded Joint, ASME/JSME Pressure Vessels and Piping Conference, Honolalu, HI, USA Jul 23-27 1995.
  • 5[5]T.Terasaki and J.Chen: JSME Inter. J., Series A., 1999, 42(2).

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