Excellent and effective interfacial transition layer with an organic/inorganic hybrid carbon nanotube network structure for basalt fiber reinforced high-performance thermoplastic composites
Author:
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference60 articles.
1. Preparation and performance of fumed silica-stabilized epoxy resin pickering emulsion for basalt fiber–sizing agents;Chen;Adv. Compos. Hybrid Mater.,2021
2. Mechanical and dynamic properties of basalt fiber-reinforced composites with nanoclay particles;Bulut;Arab. J. Sci. Eng.,2020
3. Surface modification of basalt fiber (BF) for improving compatibilities between BF and poly lactic acid (PLA) matrix;Liu;Compos. Interfaces,2018
4. Static and fatigue characterisation of new basalt fibre reinforced composites;Colombo;Compos. Struct.,2012
5. Mechanical, thermomechanical, and local anisotropy analyses of long basalt fiber reinforced polyamide 6 composites;Lee;Compos. Struct.,2019
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