Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct current

The results of the study of the phase composition and physical and mechanical properties of multicomponent coatings Ti– Cr–B–N formed by magnetron sputtering at a constant current from composite targets are presented. The features of phase formation of coatings when spraying targets containing titan...

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Main Authors: S. D. Latushkina, I. M. Romanov, A. R. Luchenok, O. I. Posylkina, Yu. A. Harlan, Ya. Yu. Martinkevich
Format: Article
Language:English
Published: Belarusian National Technical University 2019-04-01
Series:Литьë и металлургия
Subjects:
Online Access:https://lim.bntu.by/jour/article/view/2718
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author S. D. Latushkina
I. M. Romanov
A. R. Luchenok
O. I. Posylkina
Yu. A. Harlan
Ya. Yu. Martinkevich
author_facet S. D. Latushkina
I. M. Romanov
A. R. Luchenok
O. I. Posylkina
Yu. A. Harlan
Ya. Yu. Martinkevich
author_sort S. D. Latushkina
collection DOAJ
description The results of the study of the phase composition and physical and mechanical properties of multicomponent coatings Ti– Cr–B–N formed by magnetron sputtering at a constant current from composite targets are presented. The features of phase formation of coatings when spraying targets containing titanium diboride (TiB2) or boron nitride (BN) as a boron-containing component are studied. The conditions of deposition of coatings with microhardness up to 32 GPA and heat resistance up to 800 °C are established.
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institution Kabale University
issn 1683-6065
2414-0406
language English
publishDate 2019-04-01
publisher Belarusian National Technical University
record_format Article
series Литьë и металлургия
spelling doaj-art-a5f117f73b2d42498a2da4f4491e8cbf2025-02-03T11:51:08ZengBelarusian National Technical UniversityЛитьë и металлургия1683-60652414-04062019-04-010111211810.21122/1683-6065-2019-1-112-1182686Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct currentS. D. Latushkina0I. M. Romanov1A. R. Luchenok2O. I. Posylkina3Yu. A. Harlan4Ya. Yu. Martinkevich5Physical-Engineering Institute of the NAS of BelarusPhysical-Engineering Institute of the NAS of BelarusResearch Institute of Pulse Processes with Pilot Plant, Powder Metallurgy Institute of the NAS of BelarusPhysical-Engineering Institute of the NAS of BelarusPhysical-Engineering Institute of the NAS of BelarusPhysical-Engineering Institute of the NAS of BelarusThe results of the study of the phase composition and physical and mechanical properties of multicomponent coatings Ti– Cr–B–N formed by magnetron sputtering at a constant current from composite targets are presented. The features of phase formation of coatings when spraying targets containing titanium diboride (TiB2) or boron nitride (BN) as a boron-containing component are studied. The conditions of deposition of coatings with microhardness up to 32 GPA and heat resistance up to 800 °C are established.https://lim.bntu.by/jour/article/view/2718magnetron sputteringtargetheat resistancemicrohardness
spellingShingle S. D. Latushkina
I. M. Romanov
A. R. Luchenok
O. I. Posylkina
Yu. A. Harlan
Ya. Yu. Martinkevich
Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct current
Литьë и металлургия
magnetron sputtering
target
heat resistance
microhardness
title Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct current
title_full Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct current
title_fullStr Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct current
title_full_unstemmed Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct current
title_short Technological features of Ti–Cr–B–N coatings formation by magnetron sputtering method in a direct current
title_sort technological features of ti cr b n coatings formation by magnetron sputtering method in a direct current
topic magnetron sputtering
target
heat resistance
microhardness
url https://lim.bntu.by/jour/article/view/2718
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AT oiposylkina technologicalfeaturesofticrbncoatingsformationbymagnetronsputteringmethodinadirectcurrent
AT yuaharlan technologicalfeaturesofticrbncoatingsformationbymagnetronsputteringmethodinadirectcurrent
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