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Channel size distribution of complex three-dimensional microstructures calculated from the topological characterization of isodistance structures

机译:根据等距结构的拓扑表征计算出复杂三维微结构的通道尺寸分布

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摘要

We present a novel approach for quantifying the channel size distribution (CSD) of complex three-dimensional microstructures. The CSD, which characterizes the probability of finding a channel bottleneck with a given size, is difficult to measure for materials with complex microstructures that are extensively interconnected. More importantly, insights about the physical properties of these materials, such as transport properties, may be provided by their CSD. The CSD is measured by topological characterization of a distance function, which is calculated from complex microstructural data using the level set method. The newly developed method for calculating CSD is shown to be robust such that it is applicable to both smooth and discontinuous (bi-level) data. The method is demonstrated by calculating the CSDs for three-dimensional microstructures formed through conserved (Cahn-Hilliard) and nonconserved (Allen-Cahn) dynamics. We found significant differences between the two structures in their characteristic channel size and the width of their distributions, even though their genera, a measure of connectivity, are almost identical. The CSD, which was not previously available for complex microstructures, will provide a new means to correlate properties of composite materials with their performance. Published by Elsevier Ltd. on behalf of Acta Materialia Inc.
机译:我们提出了一种量化复杂三维微观结构的通道尺寸分布(CSD)的新方法。CSD 表征了找到给定尺寸的通道瓶颈的概率,对于具有广泛相互连接的复杂微观结构的材料来说,很难测量。更重要的是,有关这些材料的物理特性(例如运输特性)的见解可能由它们的 CSD 提供。CSD是通过距离函数的拓扑表征来测量的,该表征是使用水平集方法从复杂的微观结构数据中计算出来的。新开发的CSD计算方法被证明是稳健的,因此它适用于平滑和不连续(双电平)数据。该方法通过计算通过保守(Cahn-Hilliard)和非保守(Allen-Cahn)动力学形成的三维微观结构的CSDs来证明。我们发现这两种结构在特征通道大小和分布宽度方面存在显着差异,尽管它们的属(连接性的衡量标准)几乎相同。CSD以前不适用于复杂的微观结构,它将提供一种将复合材料的性能与其性能相关联的新方法。由 Elsevier Ltd. 代表 Acta Materialia Inc. 出版。

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