Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrate

The ion-plasma sprayed titanium nitride (TiN) coating on the prepared 40Cr steel substrate is investigated. A part of the coating surface was covered by the copper foil mask to measure its thickness afterwards. The properties and characteristics of the sample surface microtopography before and after...

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Main Authors: Evgeniy V Sadyrin, Boris I. Mitrin, Leonid I. Krenev, Sergey M. Aizikovich
Format: Article
Language:Russian
Published: Don State Technical University 2015-12-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/40
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spelling doaj-1dc4c99d6ab64779ae6a85a0ebd581d52021-10-02T17:08:15ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532015-12-01154374510.12737/1606640Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrateEvgeniy V Sadyrin0Boris I. Mitrin1Leonid I. Krenev2Sergey M. Aizikovich3Don State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityThe ion-plasma sprayed titanium nitride (TiN) coating on the prepared 40Cr steel substrate is investigated. A part of the coating surface was covered by the copper foil mask to measure its thickness afterwards. The properties and characteristics of the sample surface microtopography before and after coating deposition are studied by the atomic-force microscopy (AFM). The technique for the high-precision determination of the coating thickness using the results of the AFM scanning of the transition area between the substrate and the coating on the sample surface is described and applied. The calculated uncertainty of the measured value of thickness is significantly less than in other methods. Mechanical properties of the coating are measured by the instrumental indentation method; the significance of an accurate determination of the correct thickness for measuring the coating characteristics by the indentation technique is shown.https://www.vestnik-donstu.ru/jour/article/view/40шероховатостьтвердостьмодуль юнгаизмерение толщины покрытияинструментальное индентированиесканирующая зондовая микроскопияroughnesshardnessyoung’s moduluscoating thickness measurementinstrumented indentationscanning probe microscopy
collection DOAJ
language Russian
format Article
sources DOAJ
author Evgeniy V Sadyrin
Boris I. Mitrin
Leonid I. Krenev
Sergey M. Aizikovich
spellingShingle Evgeniy V Sadyrin
Boris I. Mitrin
Leonid I. Krenev
Sergey M. Aizikovich
Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrate
Advanced Engineering Research
шероховатость
твердость
модуль юнга
измерение толщины покрытия
инструментальное индентирование
сканирующая зондовая микроскопия
roughness
hardness
young’s modulus
coating thickness measurement
instrumented indentation
scanning probe microscopy
author_facet Evgeniy V Sadyrin
Boris I. Mitrin
Leonid I. Krenev
Sergey M. Aizikovich
author_sort Evgeniy V Sadyrin
title Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrate
title_short Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrate
title_full Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrate
title_fullStr Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrate
title_full_unstemmed Study on mechanical and microgeometric characteristics of ion-plasma deposited TiN coating on 40Cr steel substrate
title_sort study on mechanical and microgeometric characteristics of ion-plasma deposited tin coating on 40cr steel substrate
publisher Don State Technical University
series Advanced Engineering Research
issn 2687-1653
publishDate 2015-12-01
description The ion-plasma sprayed titanium nitride (TiN) coating on the prepared 40Cr steel substrate is investigated. A part of the coating surface was covered by the copper foil mask to measure its thickness afterwards. The properties and characteristics of the sample surface microtopography before and after coating deposition are studied by the atomic-force microscopy (AFM). The technique for the high-precision determination of the coating thickness using the results of the AFM scanning of the transition area between the substrate and the coating on the sample surface is described and applied. The calculated uncertainty of the measured value of thickness is significantly less than in other methods. Mechanical properties of the coating are measured by the instrumental indentation method; the significance of an accurate determination of the correct thickness for measuring the coating characteristics by the indentation technique is shown.
topic шероховатость
твердость
модуль юнга
измерение толщины покрытия
инструментальное индентирование
сканирующая зондовая микроскопия
roughness
hardness
young’s modulus
coating thickness measurement
instrumented indentation
scanning probe microscopy
url https://www.vestnik-donstu.ru/jour/article/view/40
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AT borisimitrin studyonmechanicalandmicrogeometriccharacteristicsofionplasmadepositedtincoatingon40crsteelsubstrate
AT leonidikrenev studyonmechanicalandmicrogeometriccharacteristicsofionplasmadepositedtincoatingon40crsteelsubstrate
AT sergeymaizikovich studyonmechanicalandmicrogeometriccharacteristicsofionplasmadepositedtincoatingon40crsteelsubstrate
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