Authors:
Margolin, BZ
Shvetsova, VA
Gulenko, AG
Ilyin, A
Citation: Bz. Margolin et al., Cleavage fracture toughness for 3Cr-Ni-Mo-V reactor pressure vessel steel:theoretical prediction and experimental investigation, INT J PRES, 78(6), 2001, pp. 429-441
Citation: Vi. Kostylev et Bz. Margolin, Determination of residual stress and strain fields caused by cladding and tempering of reactor pressure vessels, INT J PRES, 77(12), 2000, pp. 723-735
Citation: Bz. Margolin et Vi. Kostylev, Modeling for ductile-to-brittle transition under ductile crack growth for reactor pressure vessel steels, INT J PRES, 76(5), 1999, pp. 309-317
Citation: Bz. Margolin et al., Radiation embrittlement modelling for reactor pressure vessel steels: I. Brittle fracture toughness prediction, INT J PRES, 76(10), 1999, pp. 715-729
Citation: Bz. Margolin et Vi. Kostylev, Radiation embrittlement modelling for reactor pressure vessel steels: II. Ductile fracture toughness prediction, INT J PRES, 76(10), 1999, pp. 731-740
Citation: Bz. Margolin et Ag. Gulenko, Lifetime prediction for intercrystalline fracture under cyclic loading with various strain rates, INT J FATIG, 21(5), 1999, pp. 497-505
Citation: Bz. Margolin et al., Improved probabilistic model for fracture toughness prediction for nuclearpressure vessel steels, INT J PRES, 75(12), 1998, pp. 843-855