Effect of graphenenano-platelets on the mechanical properties of Mg/3wt%Al alloy-nanocomposite

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Abstract

The bulk Mg/3%Al/0.1%GNP alloy-nano composite was fabricated using powder metallurgy route assisted with microwave sintering and followed by hot extrusion. The microstructural and Raman spectroscopy studies were performed to characterize the graphene nano-platelet(GNP).EDX tests confirmed the presence and the homogeneous distribution of Al and graphene nano-platelets in the magnesium alloy-nanocomposite. The addition of 3 wt% Al and 0.1wt%GNP to the Mg changed Vicker hardness, ultimate tensile strength and failure strain by +46.15%,+17.6% and -5% respectively. The fabricated composite offers higher resistance to the local deformation than monolithic Mg and Mg/3%Al alloy, revealed by the load/unload-indentation depth curve.

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Kumar, P., Kujur, M., Mallick, A., Tun, K. S., & Gupta, M. (2018). Effect of graphenenano-platelets on the mechanical properties of Mg/3wt%Al alloy-nanocomposite. In IOP Conference Series: Materials Science and Engineering (Vol. 346). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/346/1/012001

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