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Prediction of the elastic properties of single walled carbon nanotube reinforced polymers: A comparative study of several micromechanical models

机译:单壁碳纳米管增强聚合物的弹性性能预测:几种微力学模型的比较研究

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摘要

This paper deals with the prediction of the elastic properties of polymer composites reinforced with single walled carbon nanotubes. Our main contribution is the investigation of several micromechanical models, while most of the papers on the subject deal with only one approach. We implemented four homogenization schemes, a sequential one and three others based on various extensions of the Mori-Tanaka (M-T) mean-field homogenization model: two-level (M-T/M-T), two-step (M-T/M-T) and two-step (M-T/Voigt). Several composite systems are studied, with various properties of the matrix and the graphene, short or long nanotubes, fully aligned or randomly oriented in 3D or 2D. Validation targets are experimental data or finite element results, either based on a 2D periodic unit cell or a 3D representative volume element. The comparative study showed that there are cases where all micromechanical models give adequate predictions, while for some composite materials and some properties, certain models fail in a rather spectacular fashion. It was found that the two-level (M-T/M-T) homogenization model gives the best predictions in most cases. (c) 2006 Elsevier Ltd. All rights reserved.
机译:本文对单壁碳纳米管增强的聚合物复合材料的弹性性能进行了预测。我们的主要贡献是对几种微机械模型的研究,而与此主题相关的大多数论文仅涉及一种方法。我们基于Mori-Tanaka(MT)平均场均化模型的各种扩展,实施了四种均质化方案,依次采用一种方案和另外三种方案:两级(MT / MT),两步(MT / MT)和两级步骤(MT / Voigt)。研究了几种复合系统,这些系统具有3D或2D完全对齐或随机取向的基质和石墨烯,短或长纳米管的各种特性。验证目标是基于2D周期晶胞或3D代表性体积元素的实验数据或有限元结果。对比研究表明,在某些情况下,所有的微机械模型都给出了充分的预测,而对于某些复合材料和某些性能,某些模型会以相当惊人的方式失败。发现在大多数情况下,两级(M-T / M-T)均质化模型可提供最佳预测。 (c)2006 Elsevier Ltd.保留所有权利。

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