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Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film

To investigate atomic oxygen effects on tribological properties of Mo/MoS(2)-Pb-PbS film and further enlarge application range, atomic oxygen exposure tests were carried out for 5 h, 10 h, 15 h, and 20 h by the atomic oxygen simulator with atomic oxygen flux of 2.5 × 10(15) atoms/cm(2)·s. The exposu...

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Autores principales: Han, Cuihong, Li, Guolu, Ma, Guozheng, Shi, Jiadong, Wei, Aobo, Li, Zhen, Yong, Qingsonge, Wang, Haidou, Wang, Huipeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8911873/
https://www.ncbi.nlm.nih.gov/pubmed/35269082
http://dx.doi.org/10.3390/ma15051851
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author Han, Cuihong
Li, Guolu
Ma, Guozheng
Shi, Jiadong
Wei, Aobo
Li, Zhen
Yong, Qingsonge
Wang, Haidou
Wang, Huipeng
author_facet Han, Cuihong
Li, Guolu
Ma, Guozheng
Shi, Jiadong
Wei, Aobo
Li, Zhen
Yong, Qingsonge
Wang, Haidou
Wang, Huipeng
author_sort Han, Cuihong
collection PubMed
description To investigate atomic oxygen effects on tribological properties of Mo/MoS(2)-Pb-PbS film and further enlarge application range, atomic oxygen exposure tests were carried out for 5 h, 10 h, 15 h, and 20 h by the atomic oxygen simulator with atomic oxygen flux of 2.5 × 10(15) atoms/cm(2)·s. The exposure time in test was equivalent to the atomic oxygen cumulative flux for 159.25 h, 318.5 h, 477.75 h, and 637 h at the height of 400 km in space. Then, the vacuum friction test of Mo/MoS(2)-Pb-PbS thin film was performed under the 6 N load and 100 r/min. By SEM, TEM, and XPS analysis of the surface of the film after atomic oxygen erosion, it was observed that atomic oxygen could cause serious oxidation on the surface of Mo/MoS(2)-Pb-PbS film, and the contents of MoS(2), PbS, and Pb, which were lubricating components, were significantly reduced, and oxides were generated. From AES analysis and the variation in the main element content, Mo/MoS(2)-Pb-PbS thin film showed self-protection ability in an atomic oxygen environment. Hard oxide generated after atomic oxygen erosion such as MoO(3) and Pb(3)O(4) could cause the friction coefficient slight fluctuations, but the average friction coefficient was in a stable state.
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spelling pubmed-89118732022-03-11 Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film Han, Cuihong Li, Guolu Ma, Guozheng Shi, Jiadong Wei, Aobo Li, Zhen Yong, Qingsonge Wang, Haidou Wang, Huipeng Materials (Basel) Article To investigate atomic oxygen effects on tribological properties of Mo/MoS(2)-Pb-PbS film and further enlarge application range, atomic oxygen exposure tests were carried out for 5 h, 10 h, 15 h, and 20 h by the atomic oxygen simulator with atomic oxygen flux of 2.5 × 10(15) atoms/cm(2)·s. The exposure time in test was equivalent to the atomic oxygen cumulative flux for 159.25 h, 318.5 h, 477.75 h, and 637 h at the height of 400 km in space. Then, the vacuum friction test of Mo/MoS(2)-Pb-PbS thin film was performed under the 6 N load and 100 r/min. By SEM, TEM, and XPS analysis of the surface of the film after atomic oxygen erosion, it was observed that atomic oxygen could cause serious oxidation on the surface of Mo/MoS(2)-Pb-PbS film, and the contents of MoS(2), PbS, and Pb, which were lubricating components, were significantly reduced, and oxides were generated. From AES analysis and the variation in the main element content, Mo/MoS(2)-Pb-PbS thin film showed self-protection ability in an atomic oxygen environment. Hard oxide generated after atomic oxygen erosion such as MoO(3) and Pb(3)O(4) could cause the friction coefficient slight fluctuations, but the average friction coefficient was in a stable state. MDPI 2022-03-01 /pmc/articles/PMC8911873/ /pubmed/35269082 http://dx.doi.org/10.3390/ma15051851 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Han, Cuihong
Li, Guolu
Ma, Guozheng
Shi, Jiadong
Wei, Aobo
Li, Zhen
Yong, Qingsonge
Wang, Haidou
Wang, Huipeng
Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film
title Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film
title_full Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film
title_fullStr Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film
title_full_unstemmed Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film
title_short Research on Atomic Oxygen Erosion Influence of Structural Damage and Tribological Properties of Mo/MoS(2)-Pb-PbS Thin Film
title_sort research on atomic oxygen erosion influence of structural damage and tribological properties of mo/mos(2)-pb-pbs thin film
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8911873/
https://www.ncbi.nlm.nih.gov/pubmed/35269082
http://dx.doi.org/10.3390/ma15051851
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