Prediction of Welding Residual Stress of Dissimilar Metal Weld of Nozzle using Finite Element Analyses

유한요소해석을 이용한 노즐 이종금속용접부의 용접잔류응력 예측

  • 허남수 (한국원자력연구원 중소형원자로기술개발부) ;
  • 김종욱 (한국원자력연구원 중소형원자로기술개발부) ;
  • 최순 (한국원자력연구원 중소형원자로기술개발부) ;
  • 김태완 (한국원자력연구원 중소형원자로기술개발부)
  • Published : 2008.11.05

Abstract

The primary water stress corrosion cracking (PWSCC) of dissimilar metal weld based on Alloy 82/182 is one of major issues in material degradation of nuclear components. It is well known that the crack initiation and growth due to PWSCC is influenced by material's susceptibility to PWSCC and distribution of welding residual stress. Therefore, modeling the welding residual stress is of interest in understanding crack formation and growth in dissimilar metal weld. Currently in Korea, a numerical round robin study is undertaken to provide guidance on the welding residual stress analysis of dissimilar metal weld. As a part of this effort, the present paper investigates distribution of welding resisual stress of a ferritic low alloy steel nozzle with dissimilar metal weld using Alloy 82/182. Two-dimensional thermo-mechanical finite element analyses are carried out to simulate multi-pass welding process on the basis of the detailed design and fabrication data. The present results are compared with those from other participants, and more works incorporating physical measurements are going to be performed to quantify the uncertainties relating to modelling assumptions.

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