1. USNRC, Final report-generic aging lessons learned (GALL), Report. NUREG-1801 (2010).
2. F. P. Ford and P. L. Andresen, Development and use of a predictive model of crack propagation in 304/316L, A533B/A508, and Inconel 600/182 Alloys in 288°C water, Proceedings of the 3rd Int. Symp. on Environmental Degradation of Mater. in Nucl. Power System-Water Reactors (1988) 789–800.
3. M. M. Hall and D. M. Symons, Hydrogen assisted creep fracture model for low potential stress corrosion cracking of Ni-Cr-Fe Alloys, Proceedings of Chemistry and Electrochemistry of Corrosion and Stress Corrosion Cracking Symp. (2001) 447–466.
4. P. M. Scott, An analysis of primary water stress corrosion cracking in PWR steam generators, Proceedings of the NEA/CSNI-UNIPEDE Specialists Meeting on Operating Experience with Steam Generators, OECD NEA, Belgium (1991).
5. Z. S. Smialowska and R. B. Rebak, Stress corrosion cracking of Alloy 600 in high-temperature aqueous solutions: influencing factors, mechanisms and models, Proceedings of Conf. on Control of Corrosion on the Secondary Side of Steam Generators 1995 (1996) 223–257.