Low-cycle fatigue of piping and pressure vessel steels in LWR environments

Author:

Chopra Omesh K.,Shack William J.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference39 articles.

1. ASME Boiler and Pressure Vessel Code Section III, 1992. Rules for construction of nuclear power plant components. The American Society of Mechanical Engineers, 345 East 47th Street, New York, NY 10017, 1992 Edition.

2. A review of the fatigue crack extension behavior of ferritic pressure vessel materials in pressurized water reactor environments;Bulloch;Res. Mech.,1989

3. Chopra, O.K., Shack, W.J., 1995. Effects of LWR environments on fatigue life of carbon and low-alloy steels. In: Yukawa, S. (Ed.), Fatigue and Crack Growth: Environmental Effects, Modeling Studies, and Design Considerations, vol. PVP-306. American Society of Mechanical Engineers, New York, pp. 95–109.

4. Chopra, O.K., Shack, W.J., 1995. Effects of material and loading variables on fatigue life of carbon and low-alloy steels in LWR environments. In: Rocha, M.M., Riera, J.D. (Eds.), Trans. 13th Int. Conf. on Structural Mechanics in Reactor Technology (SMiRT 13), vol. II. Escola de Engenharia—Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil, pp. 551–562.

5. Chopra, O.K., Shack, W.J., 1996. Effects of LWR coolant environments on fatigue S–N curves for carbon and low-alloy steels. In: Esselman, T.S. (Ed.), Pressure Vessel and Piping Code and Standards, vol. PVP-339. American Society of Mechanical Engineers, New York, pp. 185–198.

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