会议论文详细信息
37th Risø International Symposium on Materials Science
Influence of microwave plasma treatment on the surface properties of carbon fibers and their adhesion in a polypropylene matrix
Scheffler, C.^1 ; Wölfel, E.^1 ; Förster, T.^1 ; Poitzsch, C.^1 ; Kotte, L.^2 ; Mäder, G.^2
Leibniz Institut für Polymerforschung E.V. (IPF), Department Composite Materials, Hohe Straße 6, Dresden
01069, Germany^1
Fraunhofer Institut für Werkstoff- und Strahltechnik (IWS), Department Chemical Surface and Reaction Technology, Winterbergstraße 28, Dresden
01277, Germany^2
关键词: Adhesion behaviors;    Evaluation of parameters;    Fiber-matrix adhesion;    Mechanical performance;    O2-plasma treatment;    Plasma modifications;    Polypropylene matrices;    Single-fiber pull-out test;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/139/1/012046/pdf
DOI  :  10.1088/1757-899X/139/1/012046
来源: IOP
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【 摘 要 】

A commercially available carbon fiber (CF) with an epoxy-based sizing (EP-sized CF) and an unsized CF have been plasma treated to study the effect on the fiber-matrix adhesion towards a polypropylene matrix. The EP-sized fiber was chosen because of its predictable low adhesion in a polypropylene (PP) matrix. The fibers have been modified using a microwave low-pressure O2/CO2/N2-gas plasma source (Cyrannus®) developed at IWS in a batch process. One aim of this study was the evaluation of parameters using high energies and short time periods in the plasma chamber to see the effect on mechanical performance of CF. These results will be the fundamental work for a planned continuous plasma modification line. The CF surface was characterized by determining the surface energies, single fiber tensile strength and XPS analysis. The adhesion behavior before and after plasma treatment was studied by single fiber pull-out test (SFPO) and scanning electron microscopy (SEM). It was shown that the CO2- and O2-plasma increases the number of functional groups on the fiber surface during short time plasma treatment of 30 s. Carboxylic groups on the unsized CF surface resulting from O2-plasma treatment lead to an enhanced fiber-matrix adhesion, whereas the fiber strength was merely reduced.

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