Improved mechanical properties of magnesium-graphene composites with copper-graphene hybrids

New magnesium nanocomposites reinforced with copper-graphene nanoplatelet hybrid particles have been prepared through the semipowder metallurgy method. Compared with the monolithic Mg, the Mg-1Cu-xGNPs nanocomposites exhibited higher tensile and compressive strength. In tension, nanocomposites revea...

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Veröffentlicht in:Materials science and technology 2015-09, Vol.31 (12), p.1452-1461
Hauptverfasser: Rashad, M., Pan, F S., Asif, M., Ullah, A.
Format: Artikel
Sprache:eng
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Zusammenfassung:New magnesium nanocomposites reinforced with copper-graphene nanoplatelet hybrid particles have been prepared through the semipowder metallurgy method. Compared with the monolithic Mg, the Mg-1Cu-xGNPs nanocomposites exhibited higher tensile and compressive strength. In tension, nanocomposites revealed substantial enhancement in elastic modulus, 0.2% yield strength, ultimate tensile strength and failure strain (up to +89, +117, +58 and +96% respectively) compared to monolithic Mg. In compression, the nanocomposites showed the greatest improvement in 0.2% yield strength, and the ultimate compressive strength and failure strain (%) (up to +34, +59 and +61% respectively), whilst the compressive elastic modulus first increases and then decreases with an increase in the graphene nanoplatelets (GNPs) contents. The enhanced strength of the composites is likely to result from strengthening mechanisms invoked by the addition of Cu-GNPs hybrids.
ISSN:0267-0836
1743-2847
DOI:10.1179/1743284714Y.0000000726