MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYS

A computer code to calculate the time and space dependencies of the defect and component concentrations of a binary alloy is developed. This code is based on the theoretical model for radiation-induced segregation governed by first and second Fick’s laws with taking into account inverse Kirkendall e...

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Main Authors: R. V. Skorokhod, O. M. Buhay, V. M. Bilyk, V. L. Denysenko, O. V. Koropov
Format: Article
Language:English
Published: V.N. Karazin Kharkiv National University Publishing 2018-04-01
Series:East European Journal of Physics
Subjects:
Online Access:http://periodicals.karazin.ua/eejp/article/view/10465
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author R. V. Skorokhod
O. M. Buhay
V. M. Bilyk
V. L. Denysenko
O. V. Koropov
author_facet R. V. Skorokhod
O. M. Buhay
V. M. Bilyk
V. L. Denysenko
O. V. Koropov
author_sort R. V. Skorokhod
collection DOAJ
description A computer code to calculate the time and space dependencies of the defect and component concentrations of a binary alloy is developed. This code is based on the theoretical model for radiation-induced segregation governed by first and second Fick’s laws with taking into account inverse Kirkendall effect. The system of three coupled partial differential equations for concentrations of one of components and point defects is converted to the system of ordinary differential equations in time by a discretization procedure. Numerical solutions of this system are obtained under appropriate initial and boundary conditions by means of the MATLAB. The modeling of radiation-induced segregation in binary Fe-Cr alloys is carried out for various initial concentrations of components, temperatures, dose rates and doses. The process of achievement of steady state at dose rising is demonstrated. The calculated concentration profiles are compared with experimental profiles published in literature. The sensitivity of model to input parameters is done and the capabilities of proposed model are estimated. This computer code for multicomponent alloys is developed.
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spelling doaj.art-32e7134baff6492c88d7a578a340d0682022-12-21T17:30:58ZengV.N. Karazin Kharkiv National University PublishingEast European Journal of Physics2312-43342312-45392018-04-0151616910241MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYSR. V. Skorokhod0O. M. Buhay1V. M. Bilyk2V. L. Denysenko3O. V. Koropov4V.N. Karazin Kharkiv National University 4, Svobody sq., 61022 Kharkiv, UkraineInstitute of Applied Physics of NAS of Ukraine 58, Petropavlivska St., 40030 Sumy, UkraineInstitute of Applied Physics of NAS of Ukraine 58, Petropavlivska St., 40030 Sumy, UkraineInstitute of Applied Physics of NAS of Ukraine 58, Petropavlivska St., 40030 Sumy, UkraineInstitute of Applied Physics of NAS of Ukraine 58, Petropavlivska St., 40030 Sumy, UkraineA computer code to calculate the time and space dependencies of the defect and component concentrations of a binary alloy is developed. This code is based on the theoretical model for radiation-induced segregation governed by first and second Fick’s laws with taking into account inverse Kirkendall effect. The system of three coupled partial differential equations for concentrations of one of components and point defects is converted to the system of ordinary differential equations in time by a discretization procedure. Numerical solutions of this system are obtained under appropriate initial and boundary conditions by means of the MATLAB. The modeling of radiation-induced segregation in binary Fe-Cr alloys is carried out for various initial concentrations of components, temperatures, dose rates and doses. The process of achievement of steady state at dose rising is demonstrated. The calculated concentration profiles are compared with experimental profiles published in literature. The sensitivity of model to input parameters is done and the capabilities of proposed model are estimated. This computer code for multicomponent alloys is developed.http://periodicals.karazin.ua/eejp/article/view/10465матеріали реакторобудуваннярадіаційно-індукована сегрегаціядвокомпонентні металеві сплавипрофіль концентраціїточкові дефектиобернений ефект Кіркендаларівняння балансукомп’ютерне моделювання
spellingShingle R. V. Skorokhod
O. M. Buhay
V. M. Bilyk
V. L. Denysenko
O. V. Koropov
MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYS
East European Journal of Physics
матеріали реакторобудування
радіаційно-індукована сегрегація
двокомпонентні металеві сплави
профіль концентрації
точкові дефекти
обернений ефект Кіркендала
рівняння балансу
комп’ютерне моделювання
title MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYS
title_full MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYS
title_fullStr MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYS
title_full_unstemmed MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYS
title_short MODELING RADIATION-INDUCED SEGREGATION IN BINARY ALLOYS
title_sort modeling radiation induced segregation in binary alloys
topic матеріали реакторобудування
радіаційно-індукована сегрегація
двокомпонентні металеві сплави
профіль концентрації
точкові дефекти
обернений ефект Кіркендала
рівняння балансу
комп’ютерне моделювання
url http://periodicals.karazin.ua/eejp/article/view/10465
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