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Carbon fibre surface modification using functionalized nanoclay: A hierarchical interphase for fibre-reinforced polymer composites

机译:使用功能化纳米粘土的碳纤维表面改性:纤维增强聚合物复合材料的分层中间相

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Low interface strength is a common challenge in taking full advantage of excellent physical performances of carbon fibre (CF) reinforced polymer composites. Herein, for the first time, we have used amino-functionalized nanoclay as a linkage between CF surface and epoxy matrix, which by a cation exchange process was grafted on the CF surface. Amino-functionalized nanoclay significantly increased surface roughness, coefficient of friction, and BET surface area of CF. The results showed that nanoclay-based modification does not change the tensile strength and Weibull modulus of CF significantly however, both specific and dispersive surface energies, obtained by inverse gas chromatography technique, were increased. A high compatibility of nanoclay-based modified CF (clay@CF) with epoxy resin was also observed by analysing the contact angle between epoxy droplets and fibre surface. Moreover, single fibre fragmentation tests (SFFT) alongside fractographic observations showed that the length of fibre pull-out and the size of cracks between the fibre and matrix were outstandingly reduced in clay@CF in comparison to untreated CF, demonstrating that the stress transfer and interfacial shear strength (IFSS) have been significantly improved. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在充分利用碳纤维(CF)增强的聚合物复合材料的出色物理性能方面,低界面强度是一个普遍的挑战。在本文中,我们首次使用氨基官能化的纳米粘土作为CF表面与环氧基质之间的连接,通过阳离子交换工艺将其接枝到CF表面上。氨基官能化的纳米粘土显着增加了CF的表面粗糙度,摩擦系数和BET表面积。结果表明,基于纳米粘土的改性不会显着改变CF的拉伸强度和威布尔模量,但是,通过逆气相色谱技术获得的比表面能和分散表面能均增加了。通过分析环氧树脂液滴与纤维表面之间的接触角,还观察到了基于纳米粘土的改性CF(clay @ CF)与环氧树脂的高度相容性。此外,与未处理的CF相比,单纤维破碎测试(SFFT)和分形观察结果表明,与未处理的CF相比,黏土CF中的纤维拉出长度和纤维与基体之间的裂缝尺寸显着降低。界面剪切强度(IFSS)得到了显着提高。 (C)2017 Elsevier Ltd.保留所有权利。

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