Polymer Composites · 2019 · 16 citations · 29 references
Materials ScienceSynergistic EffectChemical EngineeringPoor InterfaceEngineeringCarbon-based MaterialFiber ReinforcementNanomaterialsComposite TechnologyCarbon FiberGraphene FiberCarbon MaterialsGraphenePolymer CompositesGraphene NanoribbonCarbon Fiber/epoxy CompositeGraphene Oxide
Abstract The poor interface of carbon fiber (CF) reinforced composites has long been one that researchers want to facilitate. A hierarchical structure of nano‐SiO 2 and small‐sized graphene oxide (sGO) on CF was constructed by a layer‐by‐layer method. The electrochemically treated CF was evenly coated with sGO sheets as a medium layer, which made nano‐SiO 2 uniformly spread over CF by electrostatic adsorption. The hierarchical structure could provide the synergistic reinforcement on the mechanical properties of CF composite by improving interface adhesion, mechanical interlocking, and chemical bonding. The interlaminar shear strength value of SiO 2 ‐sGO‐CF/epoxy composite reached 71.1 MPa, which was increased by 33.45% compared with the electrochemical etching CF/epoxy composite. The results show that the sizing of sGO and nano‐SiO 2 plays a positive synergistic effect by hierarchical reinforcement.
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Preparation of Graphitic Oxide
William S. Hummers, Richard E. Offeman · Journal of the American Chemical Society · 1958 · 29.5K citations