References
- N. Irvine, J. Francis, Nuclear Welding: Potential and Challenges for Lasers, 50 Years of Laser Cutting, 2017, p. 20.
- J. Xing, D. Song, Y. Wu, HPR 1000: advanced pressurized water reactor with active and passive safety, Eng. Times 2 (2016) 79-87.
- J.W. Yang, S.Y. Li, M.L. Zhang, L.L. Wang, W.Y. Zhang, Welding Process and Welding Consumable of Generation III Nuclear Island Main Equipment, 2016, pp. 435-450.
- A.F. Mark, J.A. Francis, H. Dai, M. Turski, P.R. Hurrell, S.K. Bate, J.R. Kornmeier, P.J. Withers, On the evolution of local material properties and residual stress in a three-pass SA508 steel weld, Acta Mater. 60 (2012) 3268-3278. https://doi.org/10.1016/j.actamat.2012.03.022
- S. Kumar, P.K. Singh, K.N. Karn, V. Bhasin, Experimental investigation of local tensile and fracture resistance behaviour of dissimilar metal weld joint: SA508 Gr. 3 Cl. 1 and SA312 Type 304LN, Fatig. Fract. Eng. Mater. Struct. 40 (2017) 190-206. https://doi.org/10.1111/ffe.12484
- H.L. Ming, Z.M. Zhang, J.Q. Wang, E.H. Han, P.P. Wang, Z.Y. Sun, Microstructure of a safe-end dissimilar metal weld joint (SA508-52-316L) prepared by narrow-gap GTAW, Mater. Char. 123 (2017) 233-243. https://doi.org/10.1016/j.matchar.2016.11.029
- H.T. Wang, G.Z. Wang, F.Z. Xuan, S.T. Tu, An experimental investigation of local fracture resistance and crack growth paths in a dissimilar metal welded joint, Mater. Des. 44 (2013) 179-189. https://doi.org/10.1016/j.matdes.2012.07.067
- M.F. Yu, Y.J. Chao, Z. Luo, An assessment of mechanical properties of A508-3 steel used in Chinese nuclear reactor pressure vessels, J. Pressure Vessel Technol. 137 (2015), 031402. https://doi.org/10.1115/1.4029434
- J.H. Kim, E.P. Yoon, Notch position in the HAZ specimen of reactor pressure vessel steel, J. Nucl. Mater. 257 (1998) 303-308. https://doi.org/10.1016/S0022-3115(98)00451-6
- H.T. Wang, G.Z. Wang, F.Z. Xuan, S.T. Tu, Local mechanical properties of a dissimilar metal welded joint in nuclear power systems, Mater. Sci. Eng., A 568 (2013) 108-117.
- J.H. Liu, L. Wang, Y. Liu, X. Song, J. Luo, D. Yuan, Fracture toughness and fracture behavior of SA508-III steel at different temperatures, Int. J. Min. Met. Mater. 21 (2014) 1187-1195. https://doi.org/10.1007/s12613-014-1026-2
- J.W. Kim, K. Lee, J.S. Kim, T.S. Byun, Local mechanical properties of Alloy 82/182 dissimilar weld joint between SA508 Gr. 1a and F316 SS at RT and 320 C, J. Nucl. Mater. 384 (2009) 212-221. https://doi.org/10.1016/j.jnucmat.2008.11.019
- B. Jeyaganesh, M.D. Callaghan, J.A. Francis, P.D. English, A. Vasileiou, M.J. Roy, W. Guo, N.M. Irvine, M.C. Smith, L. Li, A.H. Sherry, Overview of welding research under the new nuclear manufacturing, NNUMAN) Programme 6 (2014). V06BT06A076.
- ASTM A508/A508M-2016, Standard Specification for Quenched and Tempered Vacuum-Treated Carbon and Alloy Steel Forgings for Pressure Vessels, United States: ASTM International, PA, 2016.
- ASTM E8/E8M-11, Standard Test Methods for Tension Testing of Metallic Materials, United States: ASTM International, PA, 2011.
- ASTM E1820-13, Standard Test Method for Measurement of Fracture Toughness, United States: ASTM International, PA, 2013.
- S. Kim, S.Y. Kang, S. Lee, J.H. Hong, Correlation of the microstructure and fracture toughness of the heat-affected zones of an SA508 steel, Metall. Mater. Trans. 31 (2000) 1107-1119. https://doi.org/10.1007/s11661-000-0106-2
- K.H. Lee, M.J. Jhung, M.C. Kim, B.S. Lee, Effects of temperature and PWHT on microstructures and mechanical properties of SA508 Gr.4N steel, Nucl. Eng. Technol. 46 (2014) 413-422. https://doi.org/10.5516/NET.07.2013.088
- G.F. Sun, Z.D. Wang, Y. Lu, R. Zhou, Z.H. Ni, Investigation on microstructure and mechanical properties of NV E690 steel joint by laser-MIG hybrid welding, Mater. Des. 127 (2017) 297-310. https://doi.org/10.1016/j.matdes.2017.04.054
- H. Ming, Z. Zhang, J. Wang, E.H. Han, W. Ke, Microstructural characterization of an SA508-309L/308L-316L domestic dissimilar metal welded safe-end joint, Mater. Char. 97 (2014) 101-115. https://doi.org/10.1016/j.matchar.2014.08.023
- H.L. Ming, R.L. Zhu, Z.M. Zhang, J.Q. Wang, E.H. Han, W. Ke, M.X. Su, Microstructure, local mechanical properties and stress corrosion cracking susceptibility of an SA508-52M-316LN safe-end dissimilar metal weld joint by GTAW, Mater. Sci. Eng., A 669 (2016) 279-290.
- Y.T. Yang, C.H. Zhang, Z.N. Ding, C.H. Su, T.X. Yan, Y. Song, Y.G. Cheng, A correlation between micro- and nano-indentation on materials irradiated by high-energy heavy ions, J. Nucl. Mater. 498 (2018) 129-136. https://doi.org/10.1016/j.jnucmat.2017.10.025
- S.G. Lee, S.S. Sohn, B. Kim, W.G. Kim, K.K. Um, S. Lee, Effects of martensiteaustenite constituent on crack initiation and propagation in inter-critical heat-affected zone of high-strength low-alloy (HSLA) steel, Mater. Sci. Eng., A 715 (2018) 332-339.
- M. Kirk, G. Stevens, M.A. Erickson, S. Yin, A proposal for the maximum KIC for use in, ASME Code Flaw and Fracture Toughness Evaluations 1 (2011) 985-994.
- J. Hohe, D. Siegele, E. Bechler, G. Nagel, Standard and customized correlation of crack resistance curves and Charpy upper shelf energy for German reactor pressure vessel steels, Int. J. Pres. Ves. Pip. 134 (2015) 101-111. https://doi.org/10.1016/j.ijpvp.2015.08.009
- C. Prasad, P. Bhuyan, C. Kaithwas, R. Saha, S. Mandal, Mandal, Microstructure engineering by dispersing nano-spheroid cementite in ultrafine-grained ferrite and its implications on strength-ductility relationship in high carbon steel, Mater. Des. 139 (2017) 324-335. https://doi.org/10.1016/j.matdes.2017.11.019
- B. Younise, A. Sedmak, M. Rakin, N. Gubeljak, B. Medjo, M. Burzic, M. Zrilic, Micromechanical analysis of mechanical heterogeneity effect on the ductile tearing of weldments, Mater. Des. 37 (2012) 193-201. https://doi.org/10.1016/j.matdes.2012.01.001
- S.G. Park, K.H. Lee, K.D. Min, B.S. Lee, Influence of the thermodynamic parameters on the temper embrittlement of SA508 Gr.4N Ni-Cr-Mo low alloy steel with variation of Ni, Cr and Mn contents, J. Nucl. Mater. 426 (2012) 1-8. https://doi.org/10.1016/j.jnucmat.2012.02.032
- K. Karthick, S. Malarvizhi, V. Balasubramanian, S.A. Krishnan, G. Sasikala, S.K. Albert, Tensile and impact toughness properties of various regions of dissimilar joints of nuclear grade steels, Nucl. Eng. Technol. 50 (2018) 116-125. https://doi.org/10.1016/j.net.2017.10.003
- L.F. Dong, Y.X. Zhong, Q.X. Ma, C.L. Yuan, L.S. Ma, Manufacturing technology of heavy cylinder forgings, Forg. Stamping Technol. 3 (2007), 000.
- M.C. Kim, S.G. Park, K.H. Lee, B.S. Lee, Comparison of fracture properties in SA508 Gr.3 and Gr.4N high strength low alloy steels for advanced pressure vessel materials, Int. J. Pres. Ves. Pip. 131 (2015) 60-66. https://doi.org/10.1016/j.ijpvp.2015.04.010
- B. Houssin, J.P. Chavaillard, C. Coudert, Influence of temperature on tearing resistance of welds for PWR vessels, Nucl. Eng. Des. 87 (1985) 73-81. https://doi.org/10.1016/0029-5493(85)90096-2
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