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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >The robustness of the emergent scaling property of random RC network models of complex materials
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The robustness of the emergent scaling property of random RC network models of complex materials

机译:复杂材料随机RC网络模型紧急缩放特性的鲁棒性

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摘要

The so-called 'universal dielectric response' of composite materials can be reproduced as a power-law emergent response (PLER) of electrical network models. Results are presented for investigations demonstrating the robustness of the PLER of random electrical networks in order to evaluate the usefulness of such models in simulating real composite materials with microstructural disorder. The effect of imposed microstructures has been investigated, looking at both the correlation length and the network size. It is shown that the exact microstructural details may be reasonably omitted, so long as we take care that the general features of the structures, such as their relative smallest and largest scales, are represented. Anisotropy in the random microstructures is shown to alter the bulk response of the system, with the network responses found to tend towards that expected for purely parallel and series components. The power-law response is shown to be obtainable by taking the geometric mean of the two cases, showing that the bulk response of such systems is an averaged property of these two extreme cases. It is concluded that, given the longer computing times needed to simulate these more realistic representations, it is reasonable to use the simpler models.
机译:复合材料的所谓“通用介电响应”可以复制为电网模型的幂律紧急响应(PLER)。提出了用于研究的结果,以证明随机电子网络的PLER的鲁棒性,以便评估此类模型在模拟具有微结构无序的真实复合材料中的有用性。研究了施加的微结构的影响,同时考察了相关长度和网络大小。结果表明,只要我们注意表示结构的一般特征(例如相对最小和最大尺度),就可以合理地省略确切的微观结构细节。结果表明,随机微观结构中的各向异性会改变系统的整体响应,而网络响应趋向于纯并联和串联组件所期望的响应。幂律响应显示为可通过两种情况的几何平均值获得,表明这种系统的整体响应是这两种极端情况的平均性质。结论是,鉴于模拟这些更真实的表示所需的计算时间更长,因此使用更简单的模型是合理的。

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