Preparation of CF-GO-SiO2 multi-scale reinforcements based on electrostatic interaction: A non-destructive and simple method to construct hybrid interface layers of carbon fiber reinforced thermoplastic resin composites
Author:
Publisher
Elsevier BV
Subject
Mechanics of Materials,Ceramics and Composites
Reference44 articles.
1. Effects of carbon nanotube length on interfacial properties of carbon fiber reinforced thermoplastic composites;Liu;J Mater Sci,2020
2. Interfacially reinforced carbon fiber composites by grafting modified methylsilicone resin;Jiang;Compos Sci Technol,2017
3. Superdurable fiber-reinforced composite enabled by synergistic bridging effects of MXene and carbon nanotubes;Qian;Carbon,2022
4. Study on interfacial structure and high temperature mechanical properties of CF/PPEK and CF/PPES composites;Liu;Compos Interface,2004
5. Graphene/carbon nanotube hybrid as a multi-functional interfacial reinforcement for carbon fiber-reinforced composites;Kwon;Compos Part B-Eng,2017
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