Enhancement of mechanical properties of epoxy/graphene nanocomposite

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Abstract

Graphene is a novel class of nanofillers possessing outstanding characteristics including most compatible with most polymers, high absolute strength, high aspect ratio and cost effectiveness. In this study, graphene was used to reinforce epoxy as a matrix, to enhance its mechanical properties. Two types of epoxy composite were developed which are epoxy/graphene nanocomposite and epoxy/modified graphene nanocomposite. The fabrication of graphene was going through thermal expansion and sonication process. Chemical modification was only done for modified graphene where 4,4'-Methylene diphenyl diisocyanate (MDI) is used. The mechanical properties of both nanocomposite, such as Young's modulus and maximum stress were investigated. Three weight percentage were used for this study which are 0.5 wt%, 1.0 wt% and 1.5 wt%. At 0.5 wt%, modified and unmodified shows the highest value compared to neat epoxy, where the value were 8 GPa, 6 GPa and 0.675 GPa, respectively. For maximum stress, neat epoxy showed the best result compared to both nanocomposite due to the changes of material properties when adding the filler into the matrix. Therefore, both nanocomposite increase the mechanical properties of the epoxy, however modification surface of graphene gives better improvement.

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Berhanuddin, N. I. C., Zaman, I., Rozlan, S. A. M., Karim, M. A. A., Manshoor, B., Khalid, A., … Meng, Q. (2017). Enhancement of mechanical properties of epoxy/graphene nanocomposite. In Journal of Physics: Conference Series (Vol. 914). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/914/1/012036

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