Influence of Graphene Nanoplatelets on Mechanical Properties and Adhesive Wear Performance of Epoxy-Based Composites
Article
Article Title | Influence of Graphene Nanoplatelets on Mechanical Properties and Adhesive Wear Performance of Epoxy-Based Composites |
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Article Category | Article |
Authors | Eayal Awwad, K. Y. (Author), Yousif, B. F. (Author), Fallahnezhad, Khosro (Author), Saleh, Khalid (Author) and Zeng, Xuesen (Author) |
Journal Title | Friction |
Journal Citation | 9 (4), pp. 856-875 |
Number of Pages | 20 |
Year | 2021 |
Publisher | Springer |
Place of Publication | China |
ISSN | 2223-7704 |
2223-7690 | |
Digital Object Identifier (DOI) | https://doi.org/10.1007/s40544-020-0453-5 |
Web Address (URL) | http://friction.tsinghuajournals.com/EN/10.1007/s40544-020-0453-5 |
Abstract | Epoxy resin is one of the most widely used thermoset polymers in high-performance composite materials for lightweight applications. However, epoxy has a high coefficient of friction, which limits its tribological applications. In this study, the effect was investigated of different weight fractions of solid lubricant graphene nanoplatelets (GNPs), ranging from 0 wt. % to 4.5 wt. %, on mechanical and adhesive wear performance of epoxy. Adhesive wear tests covered mild and severe wear regimes. The correlation of tribological and mechanical properties was studied as well. scanning electron microscope (SEM) was used to observe the failure mechanisms for both tribological and mechanical samples after each test. The results revealed that the addition of GNPs to the epoxy improved its stiffness and hardness but reduced its fracture strength and toughness. Adhesive wear performance exhibited high efficiency with GNP additions and showed reductions in the specific wear rate, the coefficient of friction and the induced interface temperature by 76%, 37% and 22%, respectively. A fatigue wear mechanism was predominant as the applied load increased. Most importantly, severe wear signs occurred when the interface temperature reached the heat distortion temperature of the epoxy. The tribological and mechanical properties showed only a weak correlation to each other. The addition of GNPs to epoxy by less than 4.5 wt. % was highly efficient to improve the wear performance while maintaining the fracture strength and toughness. FTIR analysis shows no chemical interaction between the epoxy matrix with GNPs, which implies its physical interaction. |
Keywords | Graphene nanoplatelets; Epoxy; Adhesive wear; Solid lubricants |
Contains Sensitive Content | Does not contain sensitive content |
ANZSRC Field of Research 2020 | 401708. Tribology |
401707. Solid mechanics | |
Byline Affiliations | Faculty of Health, Engineering and Sciences |
University of Queensland | |
Centre for Future Materials | |
Institution of Origin | University of Southern Queensland |
https://research.usq.edu.au/item/q5z22/influence-of-graphene-nanoplatelets-on-mechanical-properties-and-adhesive-wear-performance-of-epoxy-based-composites
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Eayal-awwad-2021-Influence-of-graphene-nanoplatelets.pdf | ||
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