Effect of microstructure on the plasma surface treatment of carbon fibres

作者: Santiago Corujeira-Gallo , Hanshan Dong

DOI: 10.1177/0021998316684935

关键词: CarbonMaterials scienceInertCeramic matrix compositeMicrostructureComposite materialPlasma surfaceMechanical engineeringMaterials ChemistryMechanics of MaterialsCeramics and Composites

摘要: Carbon fibres are leading reinforcements in composite materials because of their outstanding mechanical and physical properties. However, the graphitic surface of these fibres is relatively inert, and the weak interaction between the carbon fibres and the polymeric matrix has negative consequences for the mechanical properties of composite materials. Surface treatments have been used to increase the surface roughness, remove contaminants or weakly bonded layers, and to alter the surface chemistry and wettability of the fibres. In this article, the authors review the effect of the microstructure on the response of the carbon fibres to the surface treatments. The observations from conventional carbon fibres and functionalisation techniques are extrapolated to plasma surface treatments and to novel carbon fibres produced from bio-precursors.

参考文章(75)
Jyongsik Jang, Hojung Yang, The effect of surface treatment on the performance improvement of carbon fiber/polybenzoxazine composites Journal of Materials Science. ,vol. 35, pp. 2297- 2303 ,(2000) , 10.1023/A:1004791313979
Zhaorui Li, Shuai Wu, Zhen Zhao, Lianghua Xu, Influence of surface properties on the interfacial adhesion in carbon fiber/epoxy composites Surface and Interface Analysis. ,vol. 46, pp. 16- 23 ,(2014) , 10.1002/SIA.5340
S. Tiwari, J. Bijwe, Various ways to strengthen the fiber‐matrix interface for enhanced composite performance Surface and Interface Analysis. ,vol. 45, pp. 1838- 1848 ,(2013) , 10.1002/SIA.5330
K. Tamargo-Martínez, S. Villar-Rodil, A. Martínez-Alonso, J.M.D. Tascón, Chemical and structural modifications of carbon nanofibers with different degrees of graphitic order following oxygen plasma treatments Materials Chemistry and Physics. ,vol. 138, pp. 615- 622 ,(2013) , 10.1016/J.MATCHEMPHYS.2012.12.028
Rongzhi Li, Lin Ye, Yiu-Wing Mai, Application of plasma technologies in fibre-reinforced polymer composites: a review of recent developments Composites Part A-applied Science and Manufacturing. ,vol. 28, pp. 73- 86 ,(1997) , 10.1016/S1359-835X(96)00097-8
Elzbieta Pamula, Paul G. Rouxhet, Bulk and surface chemical functionalities of type III PAN-based carbon fibres Carbon. ,vol. 41, pp. 1905- 1915 ,(2003) , 10.1016/S0008-6223(03)00177-5
C.S. Chen, S.S. Shyu, J.Y. Lai, L.Y. Yuan, Plasma surface treatment on carbon fibers. Part 1: Morphology and surface analysis of plasma etched fibers Composites Science and Technology. ,vol. 45, pp. 1- 7 ,(1992) , 10.1016/0266-3538(92)90116-K
Sabornie Chatterjee, Eric B. Jones, Amy C. Clingenpeel, Amy M. McKenna, Orlando Rios, Nicholas W. McNutt, David J. Keffer, Alexander Johs, Conversion of Lignin Precursors to Carbon Fibers with Nanoscale Graphitic Domains ACS Sustainable Chemistry & Engineering. ,vol. 2, pp. 2002- 2010 ,(2014) , 10.1021/SC500189P
Zhishuang Dai, Fenghui Shi, Baoyan Zhang, Min Li, Zuoguang Zhang, Effect of sizing on carbon fiber surface properties and fibers/epoxy interfacial adhesion Applied Surface Science. ,vol. 257, pp. 6980- 6985 ,(2011) , 10.1016/J.APSUSC.2011.03.047