The wear of PVD coated elements in oscillation motion at high temperature

This paper provides an overview on the recent development of coatings and modified surfaces to minimize wear between contact surfaces in high-temperature working environments. The aim of this work was to study the wear of various types of coatings deposited by the PVD (Physical Vapour Deposition) me...

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Autores principales: Maksim Antonov, Irina Hussainova, Marek Kalbarczyk, Le Liu, Demófilo Maldonado-Cortés, Remigiusz Michalczewski, Edyta Osuch-Słomka, Sylwia Sowa, Zbigniew Słomka, Maciej Łuszcz
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Publicado: Estonian Academy Publishers 2021
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Acceso en línea:https://doaj.org/article/9516ba5d46274a7e97ca4edbc890cd11
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spelling oai:doaj.org-article:9516ba5d46274a7e97ca4edbc890cd112021-11-17T17:48:21ZThe wear of PVD coated elements in oscillation motion at high temperature1736-60461736-753010.3176/proc.2021.4.18https://doaj.org/article/9516ba5d46274a7e97ca4edbc890cd112021-11-01T00:00:00Zhttps://kirj.ee/wp-content/plugins/kirj/pub/proc-4-2021-500-507_20211109160720.pdfhttps://doaj.org/toc/1736-6046https://doaj.org/toc/1736-7530This paper provides an overview on the recent development of coatings and modified surfaces to minimize wear between contact surfaces in high-temperature working environments. The aim of this work was to study the wear of various types of coatings deposited by the PVD (Physical Vapour Deposition) method on TiB2/Ti composites manufactured by Spark Plasma Sintering (SPS). The following coatings were investigated: TiN-TiCrN-AlCrN-AlCrTiN/Si3N4-multilayer, TiN-TiCrN-AlCrN-AlCrTiN/Si3N4-AlCrTiSiN+grad ON, TiN-TiCrN-AlCrN-AlTiCrN and as a reference, a commercially available AlCrN-based coating â all intended to fulfil complex requirements of high-temperature working conditions. The wear tests were performed by means of a ball-on-disc SRV friction and wear tester using reciprocating motion of the Si3N4 ball sliding against a coated disc in a wide range of temperatures from room temperature up to 900 °C. The results confirmed that high-temperature wear resistance depends on the proper design of the coatings.Maksim AntonovIrina HussainovaMarek KalbarczykLe LiuDemófilo Maldonado-CortésRemigiusz MichalczewskiEdyta Osuch-SłomkaSylwia SowaZbigniew SłomkaMaciej ŁuszczEstonian Academy Publishersarticletribologysurface engineeringpvd coatingtib2/ti compositesspswear.ScienceQENProceedings of the Estonian Academy of Sciences, Vol 70, Iss 4, Pp 500-507 (2021)
institution DOAJ
collection DOAJ
language EN
topic tribology
surface engineering
pvd coating
tib2/ti composites
sps
wear.
Science
Q
spellingShingle tribology
surface engineering
pvd coating
tib2/ti composites
sps
wear.
Science
Q
Maksim Antonov
Irina Hussainova
Marek Kalbarczyk
Le Liu
Demófilo Maldonado-Cortés
Remigiusz Michalczewski
Edyta Osuch-Słomka
Sylwia Sowa
Zbigniew Słomka
Maciej Łuszcz
The wear of PVD coated elements in oscillation motion at high temperature
description This paper provides an overview on the recent development of coatings and modified surfaces to minimize wear between contact surfaces in high-temperature working environments. The aim of this work was to study the wear of various types of coatings deposited by the PVD (Physical Vapour Deposition) method on TiB2/Ti composites manufactured by Spark Plasma Sintering (SPS). The following coatings were investigated: TiN-TiCrN-AlCrN-AlCrTiN/Si3N4-multilayer, TiN-TiCrN-AlCrN-AlCrTiN/Si3N4-AlCrTiSiN+grad ON, TiN-TiCrN-AlCrN-AlTiCrN and as a reference, a commercially available AlCrN-based coating â all intended to fulfil complex requirements of high-temperature working conditions. The wear tests were performed by means of a ball-on-disc SRV friction and wear tester using reciprocating motion of the Si3N4 ball sliding against a coated disc in a wide range of temperatures from room temperature up to 900 °C. The results confirmed that high-temperature wear resistance depends on the proper design of the coatings.
format article
author Maksim Antonov
Irina Hussainova
Marek Kalbarczyk
Le Liu
Demófilo Maldonado-Cortés
Remigiusz Michalczewski
Edyta Osuch-Słomka
Sylwia Sowa
Zbigniew Słomka
Maciej Łuszcz
author_facet Maksim Antonov
Irina Hussainova
Marek Kalbarczyk
Le Liu
Demófilo Maldonado-Cortés
Remigiusz Michalczewski
Edyta Osuch-Słomka
Sylwia Sowa
Zbigniew Słomka
Maciej Łuszcz
author_sort Maksim Antonov
title The wear of PVD coated elements in oscillation motion at high temperature
title_short The wear of PVD coated elements in oscillation motion at high temperature
title_full The wear of PVD coated elements in oscillation motion at high temperature
title_fullStr The wear of PVD coated elements in oscillation motion at high temperature
title_full_unstemmed The wear of PVD coated elements in oscillation motion at high temperature
title_sort wear of pvd coated elements in oscillation motion at high temperature
publisher Estonian Academy Publishers
publishDate 2021
url https://doaj.org/article/9516ba5d46274a7e97ca4edbc890cd11
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