Journal of Sandwich Structures & Materials · 2016 · 12 citations · 37 references
Materials ScienceFibre-reinforced PlasticMultiwalled Carbon NanotubeEngineeringCompositesMechanical EngineeringComposite TechnologyContinuous-fibre CompositeGlass-fiber Face SheetThermoplastic CompositeSandwich Composite MaterialsSandwich CompositesFiber-reinforced CompositeMixed-mode Fracture
An experimental investigation on sandwich composite materials composed of glass-fiber face sheet and polyvinyl-chloride foam core has been carried out. The research demonstrates improvement in mixed-mode delamination fracture toughness values of samples under mixed-mode bending condition. The improvement is recorded with addition of a certain percentage by weight of multiwalled carbon nanotubes in comparison to conventional samples. An easy and cost-effective methodology of multiwalled carbon nanotube insertion through sonication of epoxy resin followed by mixing with hardener and vacuum resin infusion technology for manufacturing of sandwich composites has been utilized in this study. The study also identifies the optimum weight percentage of multiwalled carbon nanotube addition in the resin system for maximum performance gain in mixed-mode fracture toughness. The results of observations in this study have been supported by field emission scanning electron microscope studies as well as high-resolution transmission electron microscope analysis.
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Helical microtubules of graphitic carbon
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