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Enhanced interphase between epoxy matrix and carbon fiber with carbon nanotube-modified silane coating

机译:碳纳米管改性的硅烷涂层增强了环氧基质与碳纤维之间的界面

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摘要

Multiwalled carbon nanotubes are incorporated into the silane coating on fiber surface to enhance the interfacial bonding of carbon fiber reinforced epoxy composite. The results of microbond tests show that the interfacial shear strength of the prepared hybrid composites can be significantly increased by up to 26.3% compared with that of common composite. In contrast, the addition of carbon nanotubes into epoxy matrix demonstrates a distinctly weaker effect on enhancing the interphase between neat silane coated carbon fiber and matrix. This discrepancy can be attributed to the densification of CNT forest within the interphase during the forming of nanocomposite coating. Based on our experimental study, the carbon nanotube-based modification of silane coating on fiber surface is considered as a more efficient approach than the widely reported carbon nanotube-based tuning of matrix for hybrid composites, at the aspects of reinforcing effect, cost saving and process complexity. (C) 2014 Elsevier Ltd. All rights reserved.
机译:将多壁碳纳米管结合到纤维表面的硅烷涂层中,以增强碳纤维增强的环氧复合材料的界面粘结。微粘结试验的结果表明,与普通复合材料相比,所制备的杂化复合材料的界面剪切强度可显着提高高达26.3%。相反,将碳纳米管添加到环氧基质中显示出对增强纯硅烷涂覆的碳纤维和基质之间的相间作用的作用明显减弱。这种差异可以归因于纳米复合涂层形成过程中界面相内CNT林的致密化。根据我们的实验研究,在增强效果,节省成本和降低成本方面,与广泛报道的基于碳纳米管的杂化复合材料基体的调整相比,对纤维表面硅烷涂层的基于碳纳米管的改性被认为是一种更有效的方法。过程复杂度。 (C)2014 Elsevier Ltd.保留所有权利。

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