Erden, Seckin, Ho, Kingsley K. C., Lamoriniere, Steven, Lee, Adam Fraser, Yildiz, Hasan and Bismarck, Alexander 2010. Continuous Atmospheric Plasma Oxidation of Carbon Fibres: Influence on the Fibre Surface and Bulk Properties and Adhesion to Polyamide 12. Plasma Chemistry and Plasma Processing 30 (4) , pp. 471-487. 10.1007/s11090-010-9227-6 |
Abstract
Continuous atmospheric plasma oxidation (APO) was used to introduce oxygen functionalities to the surface of carbon fibres in an attempt to enhance interfacial adhesion between carbon fibres and polyamide-12 (PA-12). APO only affects the surface properties of the fibres while their bulk properties remained unchanged. Contact angle and ζ-potential measurements demonstrated that APO-treated fibres became significantly more hydrophilic due to the introduction of polar oxygen-containing groups on the fibre surface, which also resulted in an increase of surface energy on the carbon fibres. The interfacial shear strength of single carbon fibre/PA-12 model composites, determined by single fibre fragmentation tests, showed an increase from 40 to 83 MPa with up to 4 min of APO treatment time which confirms that the fibre/matrix interfacial adhesion was enhanced. This highlights that the incorporation of APO into composite manufacturing will allow tailoring of the fibre/matrix interface.
Item Type: | Article |
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Date Type: | Publication |
Status: | Published |
Schools: | Chemistry Cardiff Catalysis Institute (CCI) |
Subjects: | Q Science > QD Chemistry |
Uncontrolled Keywords: | Adhesion - Fibers - Interfaces |
Publisher: | Springer |
ISSN: | 0272-4324 |
Last Modified: | 19 Mar 2016 22:21 |
URI: | https://orca.cardiff.ac.uk/id/eprint/13018 |
Citation Data
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