Computational Assessment of the Shape Change of the WWER-1000 Reactor Core Baffle Considering Effects of Radiation Swelling, Radiation Creep, and Subcritical Metal Damage Via Ductile Fracture Models

Author:

Chirkov O. Yu.,Kharchenko V. V.,Kravchuk L. V.

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials

Reference11 articles.

1. B. Z. Margolin, A. I. Murashova, and V. S. Neustroev, “Analysis of the influence of type of stress state on radiation swelling and radiation creep of austenitic steels,” Strength Mater, 44, 227–240 (2012). https://doi.org/10.1007/s11223-012-9376-3

2. N. K. Vasina, B. Z. Margolin, A. G. Gulenko, and I. P. Kursevich, “Radiation swelling of austenitic steels. Influence of various factors, processing of experimental data and formulation of governing equations,” Vopr. Materialoved., No. 4 (48), 69–88 (2006).

3. A. A. Sorokin, B. Z. Margolin, I. P. Kursevich, et al., “Influence of neutron irradiation on mechanical properties of materials of WWER reactor internals,” Vopr. Materialoved., No. 2 (66), 131–151 (2011).

4. O. Yu. Chirkov, “Validity analysis of elastic-plastic deformation mechanics problems considering the growth of pores in the material via the Rice–Tracey–Huang models. Part 3. Generalized Rice–Tracey–Huang equation,” Strength Mater, 54, 767–775 (2022). https://doi.org/10.1007/s11223-022-00453-9

5. L. M. Kachanov, Fundamentals of Plasticity Theory [in Russian], Nauka, Moscow (1969).

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