SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITE

The possibility of creating highly entropic carbide and oxide nanocoatings on superhard material Cortinitis based on hafnium, zircon, molybdenum, tungsten, yttrium and nickel was investigated. An investigation was made of the production of nitride, carbide, boride and oxide coatings and nitrides, ca...

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Main Authors: Геннадий Игоревич Костюк, Ирина Владимировна Кантемир
Format: Article
Language:English
Published: National Aerospace University «Kharkiv Aviation Institute» 2017-08-01
Series:Авіаційно-космічна техніка та технологія
Subjects:
Online Access:http://nti.khai.edu/ojs/index.php/aktt/article/view/501
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spelling doaj-dbaf31d103884fc2bc64e771d6772a792020-11-25T02:52:23ZengNational Aerospace University «Kharkiv Aviation Institute»Авіаційно-космічна техніка та технологія1727-73372663-22172017-08-01037784543SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITEГеннадий Игоревич КостюкИрина Владимировна КантемирThe possibility of creating highly entropic carbide and oxide nanocoatings on superhard material Cortinitis based on hafnium, zircon, molybdenum, tungsten, yttrium and nickel was investigated. An investigation was made of the production of nitride, carbide, boride and oxide coatings and nitrides, carbides, borides and oxides directly in the body of the material at ion energies in the range from 200 to 2·104 eV with charge numbers from 1 to 3. Important characteristics were obtained: the grain volume for all the ions and nitrogen, carbon, boron and oxygen ions listed and their depth, which allows us to evaluate the layers of nanostructures or submicrostructures that can be formed by these high-entropy coatings. Moreover, it is shown that it is possible to avoid the production of intermetallic compounds due to the high mobility of nitrogen ions.http://nti.khai.edu/ojs/index.php/aktt/article/view/501высокоэнтропийные покрытиясубмикроструктурынаноструктурытвёрдый растворинтерметаллидыкарбидыоксиды
collection DOAJ
language English
format Article
sources DOAJ
author Геннадий Игоревич Костюк
Ирина Владимировна Кантемир
spellingShingle Геннадий Игоревич Костюк
Ирина Владимировна Кантемир
SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITE
Авіаційно-космічна техніка та технологія
высокоэнтропийные покрытия
субмикроструктуры
наноструктуры
твёрдый раствор
интерметаллиды
карбиды
оксиды
author_facet Геннадий Игоревич Костюк
Ирина Владимировна Кантемир
author_sort Геннадий Игоревич Костюк
title SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITE
title_short SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITE
title_full SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITE
title_fullStr SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITE
title_full_unstemmed SCIENTIFIC FOUNDATIONS FOR THE CREATION OF HIGHLY ENTROPIC CARBIDE AND OXIDE NANOCOATINGS ON SUPERHARD MATERIAL CORTINITE
title_sort scientific foundations for the creation of highly entropic carbide and oxide nanocoatings on superhard material cortinite
publisher National Aerospace University «Kharkiv Aviation Institute»
series Авіаційно-космічна техніка та технологія
issn 1727-7337
2663-2217
publishDate 2017-08-01
description The possibility of creating highly entropic carbide and oxide nanocoatings on superhard material Cortinitis based on hafnium, zircon, molybdenum, tungsten, yttrium and nickel was investigated. An investigation was made of the production of nitride, carbide, boride and oxide coatings and nitrides, carbides, borides and oxides directly in the body of the material at ion energies in the range from 200 to 2·104 eV with charge numbers from 1 to 3. Important characteristics were obtained: the grain volume for all the ions and nitrogen, carbon, boron and oxygen ions listed and their depth, which allows us to evaluate the layers of nanostructures or submicrostructures that can be formed by these high-entropy coatings. Moreover, it is shown that it is possible to avoid the production of intermetallic compounds due to the high mobility of nitrogen ions.
topic высокоэнтропийные покрытия
субмикроструктуры
наноструктуры
твёрдый раствор
интерметаллиды
карбиды
оксиды
url http://nti.khai.edu/ojs/index.php/aktt/article/view/501
work_keys_str_mv AT gennadijigorevičkostûk scientificfoundationsforthecreationofhighlyentropiccarbideandoxidenanocoatingsonsuperhardmaterialcortinite
AT irinavladimirovnakantemir scientificfoundationsforthecreationofhighlyentropiccarbideandoxidenanocoatingsonsuperhardmaterialcortinite
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