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Electrolytic Surface Treatment for Improved Adhesion between Carbon Fibre and Polycarbonate

机译:电解表面处理可改善碳纤维与聚碳酸酯之间的附着力

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摘要

To achieve good mechanical properties of carbon fibre-reinforced polycarbonate composites, the fibre-matrix adhesion must be dialled to an optimum level. The electrolytic surface treatment of carbon fibres during their production is one of the possible means of adapting the surface characteristics of the fibres. The production of a range of tailored fibres with varying surface treatments (adjusting the current, potential, and conductivity) was followed by contact angle, inverse gas chromatography and X-ray photoelectron spectroscopy measurements, which revealed a significant increase in polarity and hydroxyl, carboxyl, and nitrile groups on the fibre surface. Accordingly, an increase in the fibre-matrix interaction indicated by a higher interfacial shear strength was observed with the single fibre pull-out force-displacement curves. The statistical analysis identified the correlation between the process settings, fibre surface characteristics, and the performance of the fibres during single fibre pull-out testing.
机译:为了获得碳纤维增强的聚碳酸酯复合材料的良好机械性能,必须将纤维基质的粘合力调至最佳水平。碳纤维在生产过程中的电解表面处理是适应纤维表面特性的可能手段之一。在生产一系列具有不同表面处理(调整电流,电势和电导率)的定制纤维之后,进行接触角,反相气相色谱和X射线光电子能谱测量,发现极性和羟基,羧基显着增加和纤维表面的腈基。因此,在单纤维拔出力-位移曲线中观察到较高的界面剪切强度所指示的纤维-基质相互作用的增加。统计分析确定了单纤维拔出测试过程中工艺设置,纤维表面特性和纤维性能之间的相关性。

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