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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >A solvent-free graphene oxide nanoribbon colloid as filler phase for epoxy-matrix composites with enhanced mechanical, thermal and tribological performance
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A solvent-free graphene oxide nanoribbon colloid as filler phase for epoxy-matrix composites with enhanced mechanical, thermal and tribological performance

机译:无溶剂氧化石墨烯纳米带胶体作为填充剂,用于增强机械,热学和摩擦学性能的环氧基复合材料

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A solvent-free graphene oxide nanoribbons colloids (GONRs-M2070) was achieved and evaluated by grafting organosilanes (KH560) and polyether amine (M2070). Epoxy composites were then prepared with the GONRs-M2070 colloids based on the in-situ blending method to investigate its effect on the mechanical, thermal and tribological properties of the resulting composites, as well as the distribution of GONR5-M2070 in the host materials. The results suggested that the GONRs-M2070, which could disperse and exfoliate well in the epoxy resin, had been successfully synthesized based on the graphene oxide nanoribbons. In addition, it was found that the addition of 0.6 wt% GONRs-M2070 can simultaneously enhanced mechanical, thermal and tribological performance of the resulting epoxy composites. For example, compared with neat epoxy resin, the 0.6 wt% GONR5-M2070 improved the flexural strength, impact strength and glass transition temperature by 16.2%, 83.9% and 32.5%, respectively. Moreover, a lower friction coefficient (0.19) and wear rate (7.65 x 10(-5) g min(-1)) were also observed at 0.6 wt% GONRs-M2070. The obtained results along with the solvent-free nature indicated that combining epoxy resin with GONRs-M2070 specially provided a green and efficient route to improve the wear resistance and decrease the friction coefficient of resin-based composites. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过接枝有机硅烷(KH560)和聚醚胺(M2070),获得并评估了无溶剂氧化石墨烯纳米带胶体(GONRs-M2070)。然后根据原位共混方法,用GONRs-M2070胶体制备环氧复合材料,以研究其对所得复合材料的机械,热学和摩擦学性能的影响,以及GONR5-M2070在主体材料中的分布。结果表明,基于氧化石墨烯纳米带成功合成了可以在环氧树脂中很好地分散和剥离的GONRs-M2070。另外,发现添加0.6重量%的GONRs-M2070可以同时增强所得环氧复合材料的机械,热和摩擦学性能。例如,与纯环氧树脂相比,0.6 wt%的GONR5-M2070的弯曲强度,冲击强度和玻璃化温度分别提高了16.2%,83.9%和32.5%。此外,在0.6 wt%的GONRs-M2070中也观察到较低的摩擦系数(0.19)和磨损率(7.65 x 10(-5)g min(-1))。获得的结果以及无溶剂的性质表明,环氧树脂与GONRs-M2070的结合特别为改善树脂基复合材料的耐磨性和降低摩擦系数提供了绿色而有效的途径。 (C)2015 Elsevier Ltd.保留所有权利。

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