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Multiscale Carbon Nanotube−Carbon Fiber Reinforcement for Advanced Epoxy Composites

Langmuir · 2007 · Vol. 23(7) · pp. 3970–3974
Elena BekyarovaErik T. ThostensonAiping YuHyoung−il KimJun GaoJihong TangH. Thomas HahnTsu−Wei ChouM.E. ItkisRobert C. Haddon

Abstract

We report an approach to the development of advanced structural composites based on engineered multiscale carbon nanotube-carbon fiber reinforcement. Electrophoresis was utilized for the selective deposition of multi- and single-walled carbon nanotubes (CNTs) on woven carbon fabric. The CNT-coated carbon fabric panels were subsequently infiltrated with epoxy resin using vacuum-assisted resin transfer molding (VARTM) to fabricate multiscale hybrid composites in which the nanotubes were completely integrated into the fiber bundles and reinforced the matrix-rich regions. The carbon nanotube/carbon fabric/epoxy composites showed approximately 30% enhancement of the interlaminar shear strength as compared to that of carbon fiber/epoxy composites without carbon nanotubes and demonstrate significantly improved out-of-plane electrical conductivity.

Carbon Nanotubes in CompositesGraphene research and applicationsFiber-reinforced polymer compositesCarbon nanotubeComposite materialMaterials scienceEpoxyCarbon nanotube metal matrix compositesTransfer moldingComposite numberCarbon fibersFiberNanotube
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References
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