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A comparative study of the load transfer mechanisms of the carbon nanotube reinforced polymer composites with interfacial crystallization

机译:界面结晶的碳纳米管增强聚合物复合材料载荷传递机理的比较研究

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With the help of shear-lag theory, load transfer analysis is performed on the carbon nanotube reinforced polymer composites with interfacial crystallization of different morphologies, including transcrystallinity layer (TCL) and nanohybrid shish-kebab (NHSK) structures. By comparison, we find that the TCL structures can ease the burden of the CNT while the NHSK structures can lead to a fluctuating distribution of the axial stress in the CNT. Both structures can improve the effective elastic modulus of the composites, though the effect of the TCL structures is more pronounced. Besides, the enhancement of the load transfer efficiency of the composites is also observed, the study of the interfacial stress on different kinds of interfaces shows that the reinforcing effect of the TCL structures is sensitive to both the CNT/crystalline polymer interface and crystalline polymer/amorphous polymer interface, while the major decisive factor for the NHSK structures is confined to be the CNT/crystalline polymer interface because of the interlocking effect. Based on these features, some suggestions are given for tailoring the high-performance carbon nanotube reinforced polymer composites. (C) 2015 Elsevier Ltd. All rights reserved.
机译:借助剪切滞后理论,对具有不同形态的界面结晶的碳纳米管增强聚合物复合材料进行了载荷转移分析,包括跨晶层(TCL)和纳米杂化烤肉串(NHSK)结构。相比之下,我们发现TCL结构可以减轻CNT的负担,而NHSK结构可以导致CNT中轴向应力的波动分布。尽管TCL结构的效果更加明显,但两种结构都可以提高复合材料的有效弹性模量。此外,还观察到了复合材料载荷传递效率的提高,对不同类型界面的界面应力的研究表明,TCL结构的增强作用对CNT /结晶聚合物界面和结晶聚合物/无定形聚合物界面,而NHSK结构的主要决定因素则是由于互锁效应而被限制在CNT /结晶聚合物界面。基于这些特征,提出了一些针对高性能碳纳米管增强聚合物复合材料定制的建议。 (C)2015 Elsevier Ltd.保留所有权利。

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