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Numerical investigation on welding residual stresses in a PWR pressurizer safety/relief nozzle
Authors:TAE‐KWANG SONG  HONG‐RYUL BAE  YUN‐JAE KIM  KYUNG‐SOO LEE
Affiliation:1. Department of Mechanical Engineering, Korea University, 1‐5 Ka, Anam‐Dong, Sungbuk‐Ku, Seoul 136‐701, Korea;2. Korea Electric Power Research Institute, Yusung‐gu, Daejon 305‐380, Korea
Abstract:This paper presents finite element simulation results of residual stresses in dissimilar metal welds of a PWR pressurizer safety/relief nozzle. The present results are believed to be significant in two aspects. The first one is to consider the effect of the presence of similar metal welds on resulting residual stresses. The second one is the mitigation effect of the overlay welding thickness on residual stresses. After dissimilar metal welding, tensile residual stresses are present both at the inner surface and at the outer surface of dissimilar metal welds. Adjacent similar metal welding, however, decreases residual stresses to compressive ones at the inner surface of dissimilar metal welds, possibly due to the bending mechanism caused radial contraction of the weld. At the outer surface of dissimilar metal welds, similar metal welding increases residual stresses. Overlay welding further decreases residual stresses at the inner surface of dissimilar and similar metal welds, but increases slightly residual stresses at the outer surface.
Keywords:finite element simulation  PWR pressurizer safety/relief nozzle  weld overlay  welding residual stress
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