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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >On the mechanism of piezoresistivity of carbon nanotube polymer composites
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On the mechanism of piezoresistivity of carbon nanotube polymer composites

机译:碳纳米管聚合物复合材料压阻机理的研究

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摘要

Carbon nanotube (CNT) polymer composites exhibit strong nonlinear and asymmetric piezoresistivity about zero strain in tensile and compressive strain states. The existing models explain the characteristic qualitatively but not quantitatively. This paper attempts to understand the mechanisms of this piezoresistivity by developing a new 3-dimensional percolation CNT network model, where the effect of CNT deformation (wall indentation and tube bending) is considered for the first time. The predicted electrical conductivity and piezoresistivity agree with experiments quantitatively, which reveals that the CNT deformation is a dominant mechanism for the nonlinearity and asymmetry of piezoresistivity of CNTpolymer composites. Parametric studies have been conducted to show the effects of morphology and electrical properties of CNTs, work functions and Poisson's ratio of polymer on the piezoresistivity of CNT-polymer composites for future application in nanosensing composites.
机译:碳纳米管(CNT)聚合物复合材料在拉伸和压缩应变状态下表现出大约为零应变的强非线性和非对称压阻。现有模型定性而非定量地解释了该特征。本文试图通过建立一个新的三维渗流CNT网络模型来了解这种压阻的机理,其中首次考虑了CNT变形(壁压痕和管弯曲)的影响。预测的电导率和压阻系数与实验定量吻合,这表明CNT变形是CNT聚合物复合材料压阻系数非线性和不对称的主要机理。已经进行了参数研究,以显示CNT的形态和电学性质,聚合物的功函和泊松比对CNT-聚合物复合材料的压阻性的影响,以备将来用于纳米传感复合材料中。

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