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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Understanding the anomalous frequency responses of composite materials using very large random resistor-capacitor networks
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Understanding the anomalous frequency responses of composite materials using very large random resistor-capacitor networks

机译:使用非常大的随机电阻 - 电容网络了解复合材料的异常频率响应

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In this paper large resistor-capacitor (RC) networks that consist of randomly distributed conductive and capacitive elements which are much larger than those previously explored are studied using an efficient algorithm. We investigate the emergent power-law scaling of the conductance and the percolation and saturation limits of the networks at the high and low frequency bounds in order to compare with a modification of the classical Effective Medium Approximation (EMA) that enables its extension to finite network sizes. It is shown that the new formula provides a simple analytical description of the network response that accurately predicts the effects of finite network size and composition and it agrees well with the new numerical calculations on large networks and is a significant improvement on earlier EMA formulae. Avenues for future improvement and explanation of the formula are highlighted. Finally, the statistical variation of network conductivity with network size is observed and explained. This work provides a deeper insight into the response of large resistor-capacitor networks to understand the AC electrical properties, size effects, composition effects and statistical variation of properties of a range of heterogeneous materials and composite systems.
机译:在本文中,使用高效算法研究了由随机分布的导电和电容元件组成的大电阻电容(RC)网络,该电容器组成的随机分布式导电和电容元件大得多。我们在高频和低频界限下调查了电力 - 幂律缩放的电力 - 网络的渗透和饱和度限制,以便与实现其扩展到有限网络的经典有效介质近似(EMA)的修改进行比较大小。结果表明,新的公式提供了一种简单的网络响应的分析描述,该网络响应准确地预测有限网络尺寸和组成的影响,并且它与大网络上的新数值计算吻合良好,并且在早期的EMA公式上是显着的改进。突出了未来改进和解释该公式的途径。最后,观察并解释了网络尺寸的网络电导率的统计变化。这项工作提供了深入了解大型电阻电容器网络了解AC电性能,尺寸效果,组成效果和一系列异质材料和复合系统的性能统计变化的响应。

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