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      Recent advances of interphases in carbon fiber-reinforced polymer composites: A review

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          Interfacial microstructure and properties of carbon fiber composites modified with graphene oxide.

          The performance of carbon fiber-reinforced composites is dependent to a great extent on the properties of fiber-matrix interface. To improve the interfacial properties in carbon fiber/epoxy composites, we directly introduced graphene oxide (GO) sheets dispersed in the fiber sizing onto the surface of individual carbon fibers. The applied graphite oxide, which could be exfoliated to single-layer GO sheets, was verified by atomic force microscope (AFM). The surface topography of modified carbon fibers and the distribution of GO sheets in the interfacial region of carbon fibers were detected by scanning electron microscopy (SEM). The interfacial properties between carbon fiber and matrix were investigated by microbond test and three-point short beam shear test. The tensile properties of unidirectional (UD) composites were investigated in accordance with ASTM standards. The results of the tests reveal an improved interfacial and tensile properties in GO-modified carbon fiber composites. Furthermore, significant enhancement of interfacial shear strength (IFSS), interlaminar shear strength (ILSS), and tensile properties was achieved in the composites when only 5 wt % of GO sheets introduced in the fiber sizing. This means that an alternative method for improving the interfacial and tensile properties of carbon fiber composites by controlling the fiber-matrix interface was developed. Such multiscale reinforced composites show great potential with their improved mechanical performance to be likely applied in the aerospace and automotive industries.
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            Interface and bonding mechanisms of plant fibre composites: An overview

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              Layer-by-layer grafting CNTs onto carbon fibers surface for enhancing the interfacial properties of epoxy resin composites

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                Author and article information

                Journal
                Composites Part B: Engineering
                Composites Part B: Engineering
                Elsevier BV
                13598368
                March 2022
                March 2022
                : 233
                : 109639
                Article
                10.1016/j.compositesb.2022.109639
                c2dda4a2-7095-44f6-9261-22950bb1f0ec
                © 2022

                https://www.elsevier.com/tdm/userlicense/1.0/

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