Citation

BibTex format

@article{Bai:2012,
author = {Bai, S and Ho, KKC and Knox, G and Bismarck, A},
journal = {Eccm 2012 Composites at Venice Proceedings of the 15th European Conference on Composite Materials},
title = {Impact of continuous atmospheric pressure plasma polymerisation of acrylic acid on the interfacial propterties of carbon fibre -RFL elastomer composites},
year = {2012}
}

RIS format (EndNote, RefMan)

TY  - JOUR
AB - An atmospheric pressure plasma polymerisation (APP) route to enhance the adhesion properties between carbon fibres and elastomeric matrix was developed. The surface chemistry and physical properties of the modified carbon fibres were characterised to examine the impact of APP treatment on carbon fibres in regards to different treatment times. The wettability of treated carbon fibres was significantly improved as result of the introduction of chemical functionalities to the fibre surface, which was indicated by XPS measurements. Micromechanical characterisation of adhesion behaviour between carbon fibres and elastomeric matrix showed significant improvement by around 60% with the longest treatment time.
AU - Bai,S
AU - Ho,KKC
AU - Knox,G
AU - Bismarck,A
PY - 2012///
TI - Impact of continuous atmospheric pressure plasma polymerisation of acrylic acid on the interfacial propterties of carbon fibre -RFL elastomer composites
T2 - Eccm 2012 Composites at Venice Proceedings of the 15th European Conference on Composite Materials
ER -

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