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Revisit to three-dimensional percolation theory: Accurate analysis for highly stretchable conductive composite materials

机译:回顾三维渗流理论:高拉伸导电复合材料的精确分析

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摘要

A percolation theory based on variation of conductive filler fraction has been widely used to explain the behavior of conductive composite materials under both small and large deformation conditions. However, it typically fails in properly analyzing the materials under the large deformation since the assumption may not be valid in such a case. Therefore, we proposed a new three-dimensional percolation theory by considering three key factors: nonlinear elasticity, precisely measured strain-dependent Poisson’s ratio, and strain-dependent percolation threshold. Digital image correlation (DIC) method was used to determine actual Poisson’s ratios at various strain levels, which were used to accurately estimate variation of conductive filler volume fraction under deformation. We also adopted strain-dependent percolation threshold caused by the filler re-location with deformation. When three key factors were considered, electrical performance change was accurately analyzed for composite materials with both isotropic and anisotropic mechanical properties.
机译:基于导电填料分数变化的渗流理论已被广泛用于解释导电复合材料在大小变形条件下的行为。但是,由于假设在这种情况下可能无效,因此通常无法正确分析大变形下的材料。因此,我们考虑了三个关键因素提出了一种新的三维渗流理论:非线性弹性,精确测量的应变相关泊松比和应变相关的渗漏阈值。使用数字图像相关(DIC)方法确定各种应变水平下的实际泊松比,以准确估算变形时导电填料体积分数的变化。我们还采用了由填充物重新定位并变形引起的应变相关渗滤阈值。当考虑三个关键因素时,可以准确地分析具有各向同性和各向异性力学性能的复合材料的电性能变化。

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