Enhanced both in-plane and through-thickness thermal conductivity of carbon fiber/epoxy composites by fabricating high thermal conductive coaxial PAN/PBO carbon fibers
Author:
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites
Reference60 articles.
1. Interfacially reinforced carbon fiber/epoxy composite laminates via in-situ synthesized graphitic carbon nitride (g-C3N4);Song;Compos. Part B,2019
2. Heterogeneously structured conductive carbon fiber composites by using multi-scale silver particles;Haldane;Compos. Part B,2014
3. Enhancing the thermal conductivity and compressive modulus of carbon fiber polymer–matrix composites in the through-thickness direction by nanostructuring the interlaminar interface with carbon black;Han;Carbon,2008
4. Through-thickness thermal conductivity enhancement of carbon fiber composite laminate by filler network;Fang;Int J Heat Mass Tran,2019
5. Extremely high thermal conductivity of carbon fiber/epoxy with synergistic effect of MXenes by freeze-drying;Guo;Compos. Commun.,2020
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