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Cohesive laws for van der Waals interactions of super carbon nanotube/polymer composites

机译:超级碳纳米管/聚合物复合材料范德华相互作用的内聚规律

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Novel macrostructures built up by carbon nanotubes (CNTs), such as super-graphene (SG) similar to a single graphite layer and super carbon nanotube (SCNT) analogous to a single-walled CNT (SWCNT), have been developed to extend the superior mechanical properties of the CNTs. This paper describes cohesive laws for the interfacial interactions of SG/polymer and SCNT/polymer composites induced by the weak van der Waals force. By denoting the volume density function of the SG in terms of the length and area density of the CNT, the van der Waals force and the cohesive energy are obtained for infinite SG/graphene at first. Then the tensile cohesive strength and cohesive energy between the SCNT and the polymer matrix are given in terms of the volume density of the SCNT and volume density of the polymer. It is shown that for a SCNT embedded in finite polymer matrix, the tensile cohesive stress depends only on the opening displacement of the interface, while the shear stress depends on both opening displacement and sliding displacements of the interface. (C) 2016 Elsevier Ltd. All rights reserved.
机译:已经开发出由碳纳米管(CNT)建立的新型宏观结构,例如类似于单石墨层的超石墨烯(SG)和类似于单壁CNT(SWCNT)的超碳纳米管(SCNT)。碳纳米管的机械性能。本文描述了弱范德华力引起的SG /聚合物和SCNT /聚合物复合材料界面相互作用的内聚规律。通过用CNT的长度和面积密度表示SG的体积密度函数,首先获得了无限大SG /石墨烯的范德华力和内聚能。然后根据SCNT的体积密度和聚合物的体积密度给出SCNT与聚合物基体之间的拉伸内聚强度和内聚能。结果表明,对于嵌入有限聚合物基体中的SCNT,拉伸内聚应力仅取决于界面的开口位移,而剪切应力取决于界面的开口位移和滑动位移。 (C)2016 Elsevier Ltd.保留所有权利。

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