Title of article
Modeling of weld residual stresses in core shroud structures Original Research Article
Author/Authors
Jinmiao Zhang، نويسنده , , Pingsha Dong، نويسنده , , Frederick W Brust، نويسنده , , William J. Shack، نويسنده , , Michael E. Mayfield، نويسنده , , Michael McNeil، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1999
Pages
17
From page
171
To page
187
Abstract
This paper presents a computational model to predict residual stresses in a girth weld (H4) of a BWR core shroud. The H4 weld is a multi-pass submerged-arc weld that joins two type 304 austenitic stainless steel cylinders. An axisymmetric solid element model was used to characterize the detailed evolution of residual stresses in the H4 weld. In the analysis, a series of advanced weld modeling techniques were used to address some specific welding-related issues, such as material melting/re-melting and history annihilation. In addition, a 3-D shell element analysis was performed to quantify specimen removal effects on residual stress measurements based on a sub-structural specimen from a core shroud. The predicted residual stresses in the H4 weld were used as the crack driving force for the subsequent analysis of stress corrosion cracking in the H4 weld. The crack growth behavior was investigated using an advanced finite element alternating method (FEAM). Stress intensity factors were calculated for both axisymmetric circumferential (360°) and circumferential surface cracks. The analysis results obtained from these studies shed light on the residual stress characteristics in core shroud weldments and the effects of residual stresses on stress corrosion cracking behavior.
Journal title
Nuclear Engineering and Design Eslah
Serial Year
1999
Journal title
Nuclear Engineering and Design Eslah
Record number
889041
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