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Vestnik Samarskogo Universiteta. Estestvenno-Nauchnaya Seriya, 2016, Issue 1-2, Pages 69–84
(Mi vsgu503)
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Physics
Influence of initial dislocation structure on point and microscopic defects kinetic under irradiation
D. A. Kornilov, V. M. Kosenkov, P. P. Silantev JSC “SSC RIAR”, 9, Zapadnoye Shosse, Dimitrovgrad, Ulyanovsk region, 433510, Russian Federation
(published under the terms of the Creative Commons Attribution 4.0 International License)
Abstract:
This work is aimed for justification of quantitative effect of radiation defect concentration decreasing in materials depending on density of edge dislocation which are their outlet. The results of defect kinetics modeling with taking into account their recombination on dislocation loops, edge dislocations and pores are given. The summery of this work is useful in the frame of solving problem of decreasing radiation swelling and material properties degradation during neutron irradiation.
Keywords:
reactor materials science, nuclear reactor, constructional materials, mechanical properties, microstructure, neutron radiation, reflector of neutrons, radiation defects, X-ray analysis, radiation damageability, beryllium.
Received: 10.02.2016
Citation:
D. A. Kornilov, V. M. Kosenkov, P. P. Silantev, “Influence of initial dislocation structure on point and microscopic defects kinetic under irradiation”, Vestnik SamU. Estestvenno-Nauchnaya Ser., 2016, no. 1-2, 69–84
Linking options:
https://www.mathnet.ru/eng/vsgu503 https://www.mathnet.ru/eng/vsgu/y2016/i1/p69
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