Modelling of Microstructural Transformations in the Systems Subject to Radiation Influence

Formalism is developed for description of microstructure transformations and phase separation in systems under irradiation. Investigation is made within the scope of the crystal phase-field method. This approach allows one to simulate materials on the molecular-dynamics spatial scales but on the dif...

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Main Author: D. O. Kharchenko, I. O. Lysenko, V. O. Kharchenko
Format: Article
Language:English
Published: G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine 2012-06-01
Series:Успехи физики металлов
Online Access:https://doi.org/10.15407/ufm.13.02.101
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spelling doaj-432f498e18354f50a35ecaea1f90d6f32020-11-25T04:01:10ZengG. V. Kurdyumov Institute for Metal Physics of the N.A.S. of UkraineУспехи физики металлов 1608-10212617-07952012-06-0113210118710.15407/ufm.13.02.101Modelling of Microstructural Transformations in the Systems Subject to Radiation InfluenceD. O. Kharchenko, I. O. Lysenko, V. O. KharchenkoFormalism is developed for description of microstructure transformations and phase separation in systems under irradiation. Investigation is made within the scope of the crystal phase-field method. This approach allows one to simulate materials on the molecular-dynamics spatial scales but on the diffusive-dynamics temporal scales. Considering a model for a periodic one-component system driven by both competing stochastic fluxes–thermally-stimulated and external ballistic mixing flues of atoms, conditions of microstructure-transformations’ appearance are determined. Analysis of the system on a mesoscopic level for a binary equiatomic system is performed. Reentrant character of phase-separation process is revealed. For systems with transient dynamics, for instance, with incommensurable time scales of propagation of disturbances, which are characterized by the memory effects, at presence of fluctuations of lengths of jumps of the atoms knocked-on by high-energy particles, occurrence of pattern-selection processes is revealed.https://doi.org/10.15407/ufm.13.02.101
collection DOAJ
language English
format Article
sources DOAJ
author D. O. Kharchenko, I. O. Lysenko, V. O. Kharchenko
spellingShingle D. O. Kharchenko, I. O. Lysenko, V. O. Kharchenko
Modelling of Microstructural Transformations in the Systems Subject to Radiation Influence
Успехи физики металлов
author_facet D. O. Kharchenko, I. O. Lysenko, V. O. Kharchenko
author_sort D. O. Kharchenko, I. O. Lysenko, V. O. Kharchenko
title Modelling of Microstructural Transformations in the Systems Subject to Radiation Influence
title_short Modelling of Microstructural Transformations in the Systems Subject to Radiation Influence
title_full Modelling of Microstructural Transformations in the Systems Subject to Radiation Influence
title_fullStr Modelling of Microstructural Transformations in the Systems Subject to Radiation Influence
title_full_unstemmed Modelling of Microstructural Transformations in the Systems Subject to Radiation Influence
title_sort modelling of microstructural transformations in the systems subject to radiation influence
publisher G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine
series Успехи физики металлов
issn 1608-1021
2617-0795
publishDate 2012-06-01
description Formalism is developed for description of microstructure transformations and phase separation in systems under irradiation. Investigation is made within the scope of the crystal phase-field method. This approach allows one to simulate materials on the molecular-dynamics spatial scales but on the diffusive-dynamics temporal scales. Considering a model for a periodic one-component system driven by both competing stochastic fluxes–thermally-stimulated and external ballistic mixing flues of atoms, conditions of microstructure-transformations’ appearance are determined. Analysis of the system on a mesoscopic level for a binary equiatomic system is performed. Reentrant character of phase-separation process is revealed. For systems with transient dynamics, for instance, with incommensurable time scales of propagation of disturbances, which are characterized by the memory effects, at presence of fluctuations of lengths of jumps of the atoms knocked-on by high-energy particles, occurrence of pattern-selection processes is revealed.
url https://doi.org/10.15407/ufm.13.02.101
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