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首页> 外文期刊>Polymer Composites >Analysis Tools for Fibrous Nanofiller Polymer Composites: Macro-and Nanoscale Dispersion Assessments Correlated With Mechanical and Electrical Composite Properties
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Analysis Tools for Fibrous Nanofiller Polymer Composites: Macro-and Nanoscale Dispersion Assessments Correlated With Mechanical and Electrical Composite Properties

机译:纤维纳米填料聚合物复合材料的分析工具:与机械和电气复合材料性能相关的宏观和纳米级色散评估

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摘要

Emerging methods to study the nanofiller agglomeration state (macrodispersion) and level of individualized nanofiller (nanodispersion) within polymer nanocompo-sites have been used separately to characterize micro-structure and relate to material properties. However, nanofiller dispersion characteristics on different scales within polymer nanocomposites may affect the composite properties in different ways and their complement has not been studied quantitatively. In this study, the dispersion of carbon nanofiber in polycarbonate, controlled by sonication conditions, was studied by the combination of macro and nanoscale style quantitative dispersion characterization tools. The quantitative dispersion results were then correlated with the electrical and mechanical properties of the nanocomposites. Key quantitative indicators of performance were identified for nanocomposite macrodispersion such as the shape of the agglomerate size distributions and number of agglomerates per volume. However, the nanodispersion style analysis demonstrated more significant differences between similarly macrodispersed systems, providing vital information required to assess nanofiller network formation potential. The results indicate the relevant use of differently scaled image analysis processes and their necessity for a comprehensive understanding of the dispersion as well as the properties of nanocomposites.
机译:研究聚合物纳米复合材料内纳米填料团聚状态(宏观分散)和单个纳米填料水平(纳米分散)的新兴方法已分别用于表征微观结构并涉及材料性能。然而,纳米填料在聚合物纳米复合材料中的不同尺度上的分散特性可能以不同的方式影响复合材料的性能,其互补作用尚未得到定量研究。在这项研究中,碳纳米纤维在聚碳酸酯中的分散,是通过超声条件控制的,是通过宏观和纳米尺度定量分散表征工具的组合来研究的。然后将定量分散结果与纳米复合材料的电学和机械性能相关联。确定了纳米复合材料大分散性能的关键定量指标,例如附聚物尺寸分布的形状和每体积附聚物的数量。但是,纳米分散样式分析显示出相似的宏观分散体系之间存在更大的差异,从而提供了评估纳米填料网络形成潜力所需的重要信息。结果表明不同比例的图像分析方法的相关用途,以及它们对于分散体以及纳米复合材料性能的全面理解的必要性。

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