Static Crack Propagation of Carbon Nanotube through Non-Bonded Interface of Nanocomposites

K. Ahmed, A. K. Keng
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引用次数: 3

Abstract

This study presents an analytical shear-lag model to illustrate the interface crack propagation of carbon nanotube (CNT) reinforced polymer-matrix composites (PMCs) using representative volume element (RVE). In the model, a 3D cylindrical RVE is picked to present the nanocomposite in which CNT/polymer chemically non-bonded interface is taken into consideration. In the non-bonded interface, the stress transfer of CNT is generally considered to be controlled by the combined contribution of mechanical interlocking, thermal residual stress, Poisson’s contraction and van der Waals (vdW) interaction. Since CNT/matrix interface becomes debonded due to crack propagation, vdW interaction which is a function of relative radial displacement of the CNT/matrix interface makes the modeling of the interface tricky and challenging. In order to solve this complexity, an iterative approach is proposed to calculate the vdW interaction for debonded CNT/matrix interface accurately. The analytical results aim to obtain the characteristics load displacement relationship in static crack propagation for CNT reinforced PMCs.
碳纳米管通过纳米复合材料非键合界面的静态裂纹扩展
采用代表性体积元(RVE)建立了碳纳米管增强聚合物基复合材料(PMCs)界面裂纹扩展的解析剪切滞后模型。在模型中,选择一个三维圆柱形RVE来表示考虑碳纳米管/聚合物化学无键界面的纳米复合材料。在非键合界面中,碳纳米管的应力传递通常被认为是由机械联锁、热残余应力、泊松收缩和范德华(vdW)相互作用共同控制的。由于碳纳米管/基体界面会因裂纹扩展而发生脱粘,vdW相互作用是碳纳米管/基体界面相对径向位移的函数,这使得界面的建模变得棘手和具有挑战性。为了解决这一复杂性,提出了一种精确计算脱粘CNT/矩阵界面vdW相互作用的迭代方法。分析结果旨在获得碳纳米管增强混凝土静力裂纹扩展的特征荷载-位移关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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