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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Grafting CNTs on carbon fabrics with enhanced mechanical and thermal properties for tribological applications of carbon fabrics/phenolic composites
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Grafting CNTs on carbon fabrics with enhanced mechanical and thermal properties for tribological applications of carbon fabrics/phenolic composites

机译:具有增强的机械和热性能的碳织物上的CNT,用于碳织物/酚醛复合材料的摩擦学应用

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摘要

To improve the tribological properties of carbon fabrics-reinforced phenolic composites, carbon nanotubes (CNTs) were in situ grown on carbon fabrics by chemical vapor deposition. Results showed that the thermal conductivity and tensile strength of the CNT-modified composites were enhanced by approximately 21% and 45%, respectively, owing to the high thermal conductivity of CNTs and the improved interfacial adhesion between carbon fabrics and resin matrix. The friction coefficient of the composites modified by CNTs increased from 0.12 to 0.14, while the wear rate decreased from 3.7 x 10(-14) m(3) (N m)(-1) to 2.8 x 10(-14) m(3) (N m)(-1). CNT-grafted composites exhibited a higher friction coefficient and greater wear resistance than CNT-free composites; this can be attributed to the improved interfacial bonding of the composites by the incorporation of CNTs. Therefore, grafting CNTs on carbon fabric is an effective method to improve the thermal, mechanical, and tribological properties of carbon fabrics-reinforced phenolic composites. Most importantly, the carbon fabrics/phenolic composites reinforced by CNTs hold a great potential in producing high-performance polymer composites for tribological application. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了改善碳织物增强酚醛复合材料的摩擦性质,通过化学气相沉积原位在碳织物上生长。结果表明,由于CNT的高导热率和碳织物基质与树脂基质之间的改善的界面粘合,CNT改性复合材料的导热性和拉伸强度分别增强了约21%和45%。由CNT改性的复合材料的摩擦系数从0.12增加到0.12,而磨损率从3.7×10( - 14)m(3)(nm)( - 1)降低至2.8×10(-14)m( 3)(n m)( - 1)。 CNT-接枝复合材料表现出比无CNT复合材料更高的摩擦系数和更大的耐磨性;这可以归因于通过掺入CNT来归因于复合材料的改进的界面键合。因此,在碳织物上移植CNT是改善碳织物增强酚醛复合材料的热,机械和摩擦学性能的有效方法。最重要的是,CNTs加强的碳织物/酚醛复合材料在生产用于摩擦学应用的高性能聚合物复合材料方面具有很大的潜力。 (c)2018年elestvier有限公司保留所有权利。

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