Influence of graphene type and content on friction and wear of silicon carbide/graphene nanocomposites in aqueous environment
Abstract: Two different types of graphene materials were used as functional nanofillers for the mechanical and tribological improvement of silicon carbide/graphene nanocomposites. On the one hand is thermally reduced graphite oxide (TRGO) reduced at three different temperatures, and on the other hand is graphene made of three different organic precursors, which were directly coated on silicon carbide (SiC) platelets (GSiC). Additionally, benchmark materials were also used as carbon fillers. The SiC/graphene nanocomposites with 2 wt% filler content were manufactured by pressureless sintering (PLS). Some composites were produced with higher graphene contents of 4% and 8% and sintered by spark plasma sintering (SPS). Microstructural analyses were conducted using scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Underwater lubrication, the SP sintered TRGO and GSiC materials with high graphene content have shown the most promising tribological performance. Furthermore, the reduced size of the homogeneously distributed nanoparticles promotes the formation of surface states, which improve the friction and wear properties
- Location
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Deutsche Nationalbibliothek Frankfurt am Main
- Extent
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Online-Ressource
- Language
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Englisch
- Notes
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Materials. - 15, 21 (2022) , 7755, ISSN: 1996-1944
- Event
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Veröffentlichung
- (where)
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Freiburg
- (who)
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Universität
- (when)
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2022
- Creator
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Schlüter, Bernadette Sofie
Schröder, Christian
Zhang, Wenli
Mülhaupt, Rolf
Degenhardt, Ulrich
Sedlák, Richard
Dusza, Ján
Balázsi, Katalin
Balázsi, Csaba
Kailer, Andreas
- DOI
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10.3390/ma15217755
- URN
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urn:nbn:de:bsz:25-freidok-2320701
- Rights
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Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
- Last update
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15.08.2025, 7:31 AM CEST
Data provider
Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.
Associated
- Schlüter, Bernadette Sofie
- Schröder, Christian
- Zhang, Wenli
- Mülhaupt, Rolf
- Degenhardt, Ulrich
- Sedlák, Richard
- Dusza, Ján
- Balázsi, Katalin
- Balázsi, Csaba
- Kailer, Andreas
- Universität
Time of origin
- 2022