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- W2510157286 abstract "The topographical features of fractured tensile, flexural, K<sub>1C</sub>, and impact specimens of0.5 wt% multi-layer graphene (MLG)/nanoclay-epoxy (EP) nanocomposites have been investigated.The topographical features studied include maximum roughness height (R<sub>max</sub> or R<sub>z</sub>),root meansquare value (R<sub>q</sub>), roughness average (R<sub>a</sub>), and waviness (W<sub>a</sub>).Due to the deflection and bifurcationof cracks by nano-fillers, specific fracture patterns are observed. Although these fracture patternsseem aesthetically appealing, however, if delved deeper, they can further be used to estimate theinfluence of nano-filler on the mechanical properties. By a meticulous examination of topographicalfeatures of fractured patterns, various important aspects related to fillers can be approximated such asdispersion state, interfacial interactions, presence of agglomerates, and overall influence of theincorporation of filler on the mechanical properties of nanocomposites. In addition, treating thenanocomposites with surfaces of specific topography can help improve the mechanical properties ofnanocomposites." @default.
- W2510157286 created "2016-09-16" @default.
- W2510157286 creator A5012637359 @default.
- W2510157286 creator A5081896146 @default.
- W2510157286 date "2016-01-01" @default.
- W2510157286 modified "2023-09-24" @default.
- W2510157286 title "Fractography analysis of 0.5 wt% multi-layer graphene/nanoclayreinforced epoxy nanocomposites" @default.
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- W2510157286 doi "https://doi.org/10.3934/matersci.2016.3.1266" @default.
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