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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Micromechanical modeling of stress transfer in carbon nanotube reinforced polymer composites
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Micromechanical modeling of stress transfer in carbon nanotube reinforced polymer composites

机译:碳纳米管增强聚合物复合材料中应力转移的微力学建模

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摘要

A micromechanics model is developed for assessing the interfacial shear stress transfer in carbon nanotube reinforced polymer (NRP) composites. The model employs three concentric cylinders, each of a different length, as the representative volume element (RVE). A capped, hollow nanotube is utilized as the innermost cylinder that is completely surrounded by a matrix cylinder, which is, in turn, embedded in a composite cylinder. The atomistic structure of the nanotube is incorporated in the model by determining the Young's modulus of the nanotube using the molecular structural mechanics approach. A continuum-based analysis is performed using the elasticity theory for the axisymmetric RVE problem to obtain an analytical solution for computing the average axial normal stress in the nanotube and the interfacial shear stress across the matrixanotube interface. Parametric studies are conducted to illustrate the applications of the present model. The numerical results indicate that using sufficiently long and large nanotubes and a small nanotube volume fraction improves the efficiency of stress transfer in NRP composites. The predictions made by the current model are in favorable agreement with existing analytical, experimental, and computational studies.
机译:建立了用于评估碳纳米管增强聚合物(NRP)复合材料中界面剪切应力转移的微力学模型。该模型使用三个不同长度的同心圆柱体作为代表体积元素(RVE)。封端的中空纳米管被用作最里面的圆柱体,该圆柱体完全被基质圆柱体包围,而后者又被嵌入复合圆柱体中。通过使用分子结构力学方法确定纳米管的杨氏模量,将纳米管的原子结构结合到模型中。使用弹性理论对轴对称RVE问题进行基于连续体的分析,以获得用于计算纳米管中平均轴向法向应力和横跨基体/纳米管界面的界面剪切应力的分析解决方案。进行参数研究以说明本模型的应用。数值结果表明,使用足够长且较大的纳米管和较小的纳米管体积分数可提高NRP复合材料中应力转移的效率。当前模型所做的预测与现有的分析,实验和计算研究均相吻合。

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