About the Structural Transformation of Void during Radiation Treatment of the Material

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Restructuring process of vacancy voids under the influence of post-cascade shock waves is studied by molecular dynamics method. It is shown that depending on the time gaps, which generate waves, voids can either be combined into a single complex, or break up into separate parts.

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25-31

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October 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Mirzoyev F.H. Kinetika of a clusters nukleation and formation of nanostructures in the condensed environments/The collection of works IPLIT of the Russian Academy of Sciences Modern laser and information and laser technologies,. 2005 . Pages 62 – 78.

Google Scholar

[2] Cheremskoy P. G., Slezov V. V., Betekhtin V. I. Voids in a solid body. – M.: Energoatomizdat, 1990. – 376 pages.

Google Scholar

[3] Ovchinnikov V. V. Radiation and dynamic effects. Formation possibilities of unique structural states and properties of the condensed environments/Achievements of physical sciences. 2008 . T. 178. No. 9. Pages 991-1001.

Google Scholar

[4] Zhukov V.P. Boldin A.A. Elastic-wave generation in the evolution of displacement peaks/Atomic Energy. 1987 . V. 68. P. 884-889.

DOI: 10.1007/bf01126098

Google Scholar

[5] Zhukov V.P. Demidov A.V. Calculation of the displacement peaks in the continuum approximation/Atomic Energy. 1985 . V. 59. P. 568-573.

DOI: 10.1007/bf01122180

Google Scholar

[6] XMD – Molecular Dynamics for Metals and Ceramics/[Electronic resource]. Mode of access: http: /xmd. sourceforge. net/about. html.

Google Scholar

[7] Johnson R.A. Analytic nearest-neighbor model for fcc metals/Physical Review B. 1988 . V. 37. No. 8. P. 3924-3931.

DOI: 10.1103/physrevb.37.3924

Google Scholar

[8] Andersen H.C. Molecular dynamics simulations at constant pressure and/or temperature/Journal of Chemical Physics. 1980 . V. 72. No. 4. P. 2384-2394.

Google Scholar

[9] Chudinov V.G. Cotterill R.M.J. Andreev V.V. Kinetics of the Diffuse Processes within a Cascade Region in the Sub-Threshold Stages of F.C.C. and H.C.P. Metals/Physica Status Solidi (a). 1990 . V. 122. No. 1. P. 111-120.

DOI: 10.1002/pssa.2211220110

Google Scholar

[10] Garber R. I. Fedorenko A.I. Focusing of nuclear collisions in crystals/Achievements of physical sciences. 1964 . T. 83. Вып. 3. Page 385-432.

Google Scholar

[11] Palatnik L.S., Cheremskoy P. G., Fuchs M. Ya. Voids in films. – M.: Energoatomizdat, 1982. – 216 pages.

Google Scholar

[12] Novikov I.I. Defects of a crystal structure of metals. – M.: Metallurgy, 1983. – 232 pages.

Google Scholar

[13] Ultrasounds / Heads. edition of I.P. Golyamin. – M.: The Soviet encyclopedia, 1979. – 400 pages.

Google Scholar

[14] Markidonov A.V. Starostenkov M. D., Obidina O. V. Agregatization of vacancies initiated by post-cascade shock waves/Fundamental problems of modern materials science. 2012 . T. 9. No. 4. Page 548-555.

Google Scholar