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A Multi-Scale Modeling Approach for Simulating Crack Sensing in Polymer Fibrous Composites Using Electrically Conductive Carbon Nanotube Networks. Part II: Meso- and Macro-Scale Analyses

机译:使用导电碳纳米管网络模拟聚合物纤维复合材料中裂纹感应的多尺度建模方法。第二部分:中观和宏观分析

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This is the second of a two-paper series describing a multi-scale modeling approach developed to simulate crack sensing in polymer fibrous composites by exploiting interruption of electrically conductive carbon nanotube (CNT) networks. The approach is based on the finite element (FE) method. Numerical models at three different scales, namely the micro-scale, the meso-scale and the macro-scale, have been developed using the ANSYS APDL environment. In the present paper, the meso- and macro-scale analyses are described. In the meso-scale, a two-dimensional model of the CNT/polymer matrix reinforced by carbon fibers is used to develop a crack sensing methodology from a parametric study which relates the crack position and length with the reduction of current flow. In the meso-model, the effective electrical conductivity of the CNT/polymer computed from the micro-scale is used as input. In the macro-scale, the final implementation of the crack sensing methodology is performed on a CNT/polymer/carbon fiber composite volume using as input the electrical response of the cracked CNT/polymer derived at the micro-scale and the crack sensing methodology. Analyses have been performed for cracks of two different lengths. In both cases, the numerical model predicts with good accuracy both the length and position of the crack. These results highlight the prospect of conductive CNT networks to be used as a localized structural health monitoring technique.
机译:这是两篇论文系列的第二篇,描述了一种多尺度建模方法,该方法通过利用导电碳纳米管(CNT)网络的中断来模拟聚合物纤维复合材料中的裂纹传感。该方法基于有限元(FE)方法。使用ANSYS APDL环境已经开发了三种不同尺度的数值模型,即微观尺度,中观尺度和宏观尺度。在本文中,描述了中尺度和宏观尺度的分析。在细观尺度上,碳纤维增强的CNT /聚合物基体的二维模型被用于根据参数研究开发裂缝检测方法,该方法将裂缝的位置和长度与电流的减少相关联。在介观模型中,将由微尺度计算出的CNT /聚合物的有效电导率用作输入。在宏观尺度上,裂纹感测方法的最终实现是在CNT /聚合物/碳纤维复合材料体积上进行的,使用从微观尺度得到的破裂的CNT /聚合物的电响应和裂纹感测方法作为输入。已经对两种不同长度的裂纹进行了分析。在这两种情况下,数值模型都可以很好地预测裂纹的长度和位置。这些结果突出了将导电CNT网络用作局部结构健康监测技术的前景。

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