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Simulation of Percolation Threshold Tunneling Distance and Conductivity for Carbon Nanotube (CNT)-Reinforced Nanocomposites Assuming Effective CNT Concentration

机译:假设有效的CNT浓度模拟碳纳米管(CNT)增强的纳米复合材料的渗透阈值隧穿距离和电导率

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摘要

This article suggests simple and new equations for the percolation threshold of nanoparticles, the tunneling distance between nanoparticles, and the tunneling conductivity of polymer carbon nanotubes (CNTs) nanocomposites (PCNT), assuming an effective filler concentration. The developed equations correlate the conductivity, tunneling distance, and percolation threshold to CNT waviness, interphase thickness, CNT dimensions, and CNT concentration. The developed model for conductivity is applied for some samples and the predictions are evaluated by experimental measurements. In addition, the impacts of various parameters on the mentioned terms are discussed to confirm the developed equations. Comparisons between the calculations and the experimental results demonstrate the validity of the developed model for tunneling conductivity. High levels of CNT concentration, CNT length, and interphase thickness, as well as the straightness and thinness of CNTs increase the nanocomposite conductivity. The developed formulations can substitute for the conventional equations for determining the conductivity and percolation threshold in CNT-reinforced nanocomposites.
机译:本文提出了一个简单而新颖的方程式,假设有效填料浓度,纳米颗粒的渗透阈值,纳米颗粒之间的隧穿距离以及聚合物碳纳米管(CNT)纳米复合材料(PCNT)的隧穿电导率。开发的方程式将电导率,隧穿距离和渗透阈值与CNT波纹度,相间厚度,CNT尺寸和CNT浓度相关联。将开发的电导率模型应用于某些样品,并通过实验测量来评估预测。另外,讨论了各种参数对所提到的项的影响,以确认所开发的方程。计算结果和实验结果之间的比较证明了所建立模型的隧穿电导率的有效性。高浓度的CNT浓度,CNT长度和相间厚度以及CNT的平直度和薄度可提高纳米复合材料的电导率。所开发的配方可以代替常规方程式来确定CNT增强纳米复合材料的电导率和渗透阈值。

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