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Investigating the mechanical properties of single walled carbon nanotube reinforced epoxy composite through finite element modelling

机译:通过有限元建模研究单壁碳纳米管增强环氧复合材料的力学性能

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摘要

Varying experimental results on the mechanical properties of carbon nanotube reinforced polymer composites (CNTRPs) have been reported due to the complexities associated with the characterization of material properties in nano-scale. Insight into the issues associated with CNTRPs may be brought through computational techniques time- and cost-effectively. In this study, finite element models are generated in which single walled carbon nanotube models are embedded into the epoxy resin. For modelling interface regions, two approaches named as non-bonded interactions and perfect bonding model are utilized and compared against each other. Representative volume finite element (RVE) models are built for a range of CNTRPs and employed for the evaluation of effects of diameter and chirality on the Young's modulus and Poisson's ratio of CNTRPs, for which there is a paucity in the literature. The outcomes of this study are in good agreement with those reported available in the literature earlier. The proposed modelling approach presents a valuable tool for determining other material properties of CNTRPs.
机译:由于与纳米级材料特性表征相关的复杂性,已报道了有关碳纳米管增强聚合物复合材料(CNTRPs)力学性能的各种实验结果。可以通过节省时间和成本效益的计算技术来洞悉与CNTRP相关的问题。在这项研究中,生成了将单壁碳纳米管模型嵌入到环氧树脂中的有限元模型。为了对界面区域建模,使用了两种方法,分别称为非绑定交互和完美绑定模型,并将它们相互比较。具有代表性的体积有限元(RVE)模型是为一系列CNTRP建立的,并用于评估直径和手性对CNTRP的杨氏模量和泊松比的影响,但在文献中却很少。这项研究的结果与先前文献中报道的结果非常一致。拟议的建模方法为确定CNTRP的其他材料特性提供了一种有价值的工具。

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