Calculation and Discussion for Crack Driving Force of Dissimilar Metal Welded Joint of Nuclear Power Equipment Nozzle and Safe End

Author:

Wang Dasheng1ORCID,Ting Jin1,Xiao Xu1,Jianping Tan2,Kun Zhang2,Guozhen Wang2

Affiliation:

1. China Nuclear Power Engineering Company Ltd, State Key Laboratory of Nuclear Power Safety Technology and Equipment, Shenzhen 518172, China

2. East China University of Science and Technology, MOE Key Laboratory of Pressurized System and Safety, School of Mechanical and Power Engineering, Shanghai 200237, China

Publisher

Informa UK Limited

Reference30 articles.

1. G. F. LI et al., “Stress Corrosion Cracking Behavior of Dissimilar Metal Weld A508/52M/316L in Simulated PWR Primary Water Environment,” Proc. 2nd Int. Symp. Materials and Reliability in Nuclear Power Plants, Shengyang, China, April 11–14, 2011, p. 137 (2011).

2. Metallurgical Evaluation of a Feedwater Nozzle to Safe-End Weld

3. D. RUDLAND et al., “Welding Residual Stress Solutions for Dissimilar Metal Surge Line Nozzles Welds,” Proc. 2008 ASME Pressure Vessels and Piping Division Conf., Chicago, Illinois, July 27–31, 2008, PVP2008–61285, American Society of Mechanical Engineers (2008).

4. Use of bimetallic welds in nuclear reactors: Associated problems and structural integrity assessment issues

5. J. S. KIM, S. S. HWANG, and H. P. KIM, “PWSCC Assessment of Dissimilar Weld on Steam Generator Drain Nozzle in PWR,” Proc. ASME 2009 Pressure Vessels and Piping Division Conf., Prague, Czech Republic, July 26–30, 2009, PVP2009–77715, American Society of Mechanical Engineers (2009).

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