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Quantitative evaluation of mixing using a refined Shannon entropy

机译:用精制香农熵混合的定量评估

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摘要

A method to quantify the dispersion level of fillers in a polymer composite using optical microscopy and image processing is demonstrated. Optical microscope images of a graphene suspension were taken throughout an ultrasonication procedure. A mixing index was calculated for each image using a modified Shannon entropy analysis, demonstrating that the index can be used to optimize procedures for dispersing fillers in polymers. The flexibility of the Shannon entropy index is achieved through two user-defined variables based on physically meaningful features, allowing the analysis to be applicable to a wide range of filler size distributions. Calculating a mixing index allows for characterization beyond the typical categories of 'highly' and 'poorly' dispersed systems. An index can be calculated at various stages of composite processing allowing for robust statistical analysis of the dispersion level, using only a small sample volume. The adoption of this method would lead to quantitative characterization of dispersion level in polymer composites, deepening the understanding of how processing impacts composite properties, and aiding in the design of new composite materials.
机译:证实了使用光学显微镜和图像处理量化聚合物复合物中填料分散水平的方法。在整个超声过程中取出石墨烯悬浮液的光学显微镜图像。使用改性的Shannon熵分析计算每个图像的混合指数,证明该指数可用于优化用于在聚合物中分散填料的程序。 Shannon熵索引的灵活性通过基于物理有意义的特征的两个用户定义的变量来实现,允许分析适用于各种填充尺寸分布。计算混合索引允许表征超出典型类别的“高度”和“糟糕”分散系统。可以在允许仅使用小样本体积的分散水平的稳健统计分析来计算索引的复合处理的各个阶段。采用该方法将导致聚合物复合材料中分散水平的定量表征,深化理解处理如何影响复合性能,并帮助设计新的复合材料的设计。

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