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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Mechanical properties of carbon nanotube fibers reinforced epoxy resin composite films prepared by wet winding
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Mechanical properties of carbon nanotube fibers reinforced epoxy resin composite films prepared by wet winding

机译:湿式绕组制备的碳纳米管纤维的机械性能增强环氧树脂复合膜

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摘要

Carbon nanotubes (CNTs) have a unique bond structure, high tensile strength, and high elongation at break, and thus are considered as excellent reinforcements for the preparation of high performance composites. However, the composites prepared by conventional methods suffer from poor CNT dispersion, low CNT alignment and low homogeneity of CNT-resin mixing. In this study, a new method is demonstrated to overcome these deficiencies. This method involves the preparation of CNT/epoxy (EP) resin composite films by wet winding using CNT macroscopic fibers as the reinforcements. Composite films with different EP contents are prepared by adjusting the EP concentration in the resin solution used for impregnation, the length of the resin container and the further impregnation time after winding. Thermogravimetric analysis, Raman spectroscopy and tensile testing are used to characterize the composite materials. Results show that the EP content and CNT alignment in the composite material can be controlled, and the composite film has a high tensile strength of 2 GPa and elongation at break of 4.5% when the EP content is optimized to be 44.62 wt% under the premise of a good degree of CNT alignment. The present study may provide a new technical route for the preparation of high-performance CNT composite materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:碳纳米管(CNT)具有独特的粘合结构,高拉伸强度和突破的高伸长率,因此被认为是用于制备高性能复合材料的优异增强剂。然而,通过常规方法制备的复合材料患有差的CNT分散体,低CNT取向和CNT-树脂混合的低均匀性。在这项研究中,证明了一种新方法来克服这些缺陷。该方法涉及通过使用CNT宏观纤维作为增强件,通过湿绕组制备CNT /环氧(EP)树脂复合膜。通过调节用于浸渍的树脂溶液中的EP浓度,树脂容器的长度和绕组后的进一步浸渍时间来制备具有不同EP含量的复合膜。热重分析,拉曼光谱和拉伸试验用于表征复合材料。结果表明,在复合材料中可以控制复合材料中的EP含量和CNT对准,并且当EP含量优化为44.62wt%时,复合膜具有2GPa的高抗拉强度和4.5%的伸长率良好的CNT对准。本研究可以提供一种用于制备高性能CNT复合材料的新技术途径。 (c)2019年elestvier有限公司保留所有权利。

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