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Concurrent multiscale modeling of coupling between continuum damage and piezoresistivity in CNT-polymer nanocomposites

机译:碳纳米管-聚合物纳米复合材料连续损伤与压阻耦合的并行多尺度建模

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摘要

This paper is focused on modeling the coupled effect between continuum damage and piezoresistivity in the carbon nanotube (CNT)-polymer nanocomposites by using computational micromechanics techniques based on a concurrent multiscale finite element analysis. For the progressive continuum damage in the polymer matrix, the Christensen's failure criteria is applied for damage initiation, with a phenomenological damage law used for damage evolution. For the piezoresistive effect within the nanocomposites, the dominant mechanism, i.e. the electrical tunneling effect between the CNTs is considered. The detailed microscale material response at different macroscale locations are obtained simultaneously based on information passed down from the macroscale, with the microscale then passing updated local properties to the macroscale in a concurrent multiscale algorithm. The results show that there is a good correlation between continuum damage and piezoresistive response of the nanocomposites which gives theoretical and modeling support to enable the use of CNT-polymer nanocomposites for damage detection in structural health monitoring (SHM) applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文致力于基于并行多尺度有限元分析的计算微力学技术,对碳纳米管(CNT)-聚合物纳米复合材料的连续损伤与压阻之间的耦合效应进行建模。对于聚合物基质中的渐进性连续损伤,将克里斯滕森的破坏准则应用于破坏的起始,并使用现象学的破坏定律进行破坏的演化。对于纳米复合材料内的压阻效应,考虑了主要机理,即CNT之间的电隧穿效应。根据从宏观尺度向下传递的信息,同时获得不同宏观尺度位置的详细微观尺度物质响应,然后微观尺度在并发多尺度算法中将更新的局部属性传递给宏观尺度。结果表明,纳米复合材料的连续损伤与压阻响应之间具有良好的相关性,这为在结构健康监测(SHM)应用中将CNT聚合物纳米复合材料用于损伤检测提供了理论和模型支持。 (C)2016 Elsevier Ltd.保留所有权利。

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