The elastic response of Graphene Nano Platelet/carbon fiber/epoxy hybrid composite was investigated using multiscale modeling and analysis. The importance of volume fraction of graphene, GNP dispersion, and strain rates on the mechanical behaviors was determined. The analysis entailed the building of computational molecular dynamic model, involving multilayer graphene nano-platelets in epoxy composite, and micromechanical modeling. The predicted results show that the elastic responses of the hybrid composite increase with increased GNP volume fraction, dispersion, and strain rates
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...
Numerous research efforts have been focused on developing lightweight epoxy-based composite material...
A multiscale analysis was developed for the evaluation of graphene nanoplatelet(GNP)/carbon fiber/ep...
The elastic response of Graphene Nano Platelet/carbon fiber/epoxy hybrid composite was investigated ...
The elastic response of Graphene Nano Platelet/carbon fiber/epoxy hybrid composite was investigated ...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...
Numerous research efforts have been focused on developing lightweight epoxy-based composite material...
A multiscale analysis was developed for the evaluation of graphene nanoplatelet(GNP)/carbon fiber/ep...
The elastic response of Graphene Nano Platelet/carbon fiber/epoxy hybrid composite was investigated ...
The elastic response of Graphene Nano Platelet/carbon fiber/epoxy hybrid composite was investigated ...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
Because of the relatively high specific mechanical properties of carbon fiber/epoxy composite materi...
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...
The mechanical properties of aerospace carbon fiber/graphene nanoplatelet/epoxy hybrid composites re...
Numerous research efforts have been focused on developing lightweight epoxy-based composite material...
A multiscale analysis was developed for the evaluation of graphene nanoplatelet(GNP)/carbon fiber/ep...