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Investigation on the interfacial mechanical properties of hybrid graphene-carbon nanotube/polymer nanocomposites

机译:杂交石墨烯 - 碳纳米管/聚合物纳米复合材料界面力学性能研究

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摘要

A remarkable synergetic effect between the graphene (GR) and carbon nanotube (CNT) in improving the interfacial mechanical properties of polyethylene polymer composites was investigated using molecular dynamics simulations. The reinforcement effects of two types of hybrid GR-CNT were evaluated. For the π−ππ−π stack hybrid GR-CNT, the alignment of CNT has a slight effect on the interfacial mechanical properties. For the covalent bond hybrid GR-CNT, the reinforcement effect increases with the CNT's length and radius, and multi-walled carbon nanotube is more efficient than single-walled carbon nanotube. With the same parameters of CNT, the interfacial mechanical properties of π−ππ−π stack hybrid GR-CNT is superior to the covalent bond hybrid GR-CNT. Compared with GR, the hybrid GR-CNT can effectively enhance the interfacial mechanical properties due to the synergetic effect between the GR and the CNT.
机译:研究了石墨烯(GR)和碳纳米管(CNT)之间提高了聚乙烯聚合物复合材料的界面力学性能之间的显着协同效应,进行了分子动力学模拟。评估了两种杂种GR-CNT的增强效果。对于π-ππ-π堆栈杂交GR-CNT,CNT的对准对界面力学性能具有轻微影响。对于共价键合杂交GR-CNT,增强效果随着CNT的长度和半径而增加,多壁碳纳米管比单壁碳纳米管更有效。利用CNT的相同参数,π-ππ-π-π-π堆叠杂交GNT的界面力学性能优于共价键合杂交GR-CNT。与GR相比,杂交GR-CNT由于GR和CNT之间的协同效应,可以有效地提高界面力学性能。

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