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Electrical conductivity of nanocomposites based on carbon nanotubes - a 3D multiscale modeling approach

机译:基于碳纳米管的纳米复合材料的电导率-3D多尺度建模方法

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Remarkable electrical properties of carbon nanotubes (CNT) have lead to increased interest in studying CNT-based devices. Many of current researches are devoted to using all kinds of carbon nanomaterials in the construction of sensory elements. One of the most common applications is the development of high performance, large scale sensors. Due to the remarkable conductivity of CNT's such devices represent very high sensitivity. However, there are no sufficient tools for studying and designing such sensors. The main objective of this paper is to develop and validate a multiscale numerical model for a carbon nanotubes based sensor. The device utilises the change of electrical conductivity of a nanocomposite material under applied deformation. The nanocomposite consists of a number of CNTs dispersed in polymer matrix. The paper is devoted to the analysis of the impact of spatial distribution of carbon nanotubes in polymer matrix on electrical conductivity of the sensor. One of key elements is also to examine the impact of strain on electric charge flow in such anisotropic composite structures. In the following work a multiscale electro-mechanical model for CNT - based nanocomposites is proposed. The model comprises of two length scales, namely the meso- and the macro-scale for mechanical and electrical domains. The approach allows for evaluation of macro-scale mechanical response of a strain sensor. Electrical properties of polymeric material with certain CNT fractions were derived considering electrical properties of CNTs, their contact and the tunnelling effect.
机译:碳纳米管(CNT)的显着电性能导致研究基于CNT的装置的兴趣增加。目前的许多研究都致力于使用各种碳纳米材料在施工元素的构建中。其中一个最常见的应用是开发高性能,大规模传感器。由于CNT的这种装置的显着电导率表示非常高的灵敏度。但是,没有足够的工具来研究和设计这种传感器。本文的主要目的是开发和验证基于碳纳米管的传感器的多尺度数值模型。该装置利用施加变形下纳米复合材料的导电率的变化。纳米复合材料由分散在聚合物基质中的许多CNT组成。本文致力于分析碳纳米管空间分布在聚合物基质中的影响对传感器的电导率。关键元件之一也是检查这种各向异性复合结构中应变对电荷流动的影响。在下面的工作中,提出了基于CNT的纳米复合材料的多尺度电力机械模型。该模型包括两个长度,即机械和电畴的中间和宏观尺度。该方法允许评估应变传感器的宏观机械响应。考虑CNT,其接触和隧道效应的电性能,推导出具有某些CNT级分的聚合物材料的电性能。

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