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Quantifying the dispersion of carbon nanotubes in thermoplastic-toughened epoxy polymers

机译:量化碳纳米管在热塑性增韧环氧聚合物中的分散度

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The distribution of particles within modern materials must be defined to understand the change in properties attained by their addition. Two methods of analysis, which use different size scales, are presented here. These methods are applied to characterise the dispersion of multi-walled carbon nanotubes in a thermoplastic-toughened epoxy polymer. First, the greyscale method uses transmission optical micrographs, and calculates the ratio of the variance/mean of the greyscale values. Higher values indicate a greater degree of clustering; lower values may be described as showing a 'better' distribution of nanotubes, hence allowing the results to be ranked. This method is relatively easier to carry out, but care must be taken to use a consistent small thickness of sample. Secondly, the quadrat analysis uses transmission electron micrographs of the same materials, after identifying the centre of each nanotube observed. This defines the distribution on the scale of the nanotubes. Peaks in the relationship between the ratio of the variance/mean and cell size are related to microstructural features such as agglomeration. This scale is expected to be related to the scale of microstructural deformation mechanisms which determine global material properties.
机译:必须定义现代材料中颗粒的分布,以了解通过添加它们而获得的性能变化。本文介绍了两种使用不同规模标尺的分析方法。这些方法适用于表征多壁碳纳米管在热塑性增韧环氧聚合物中的分散性。首先,灰度方法使用透射光学显微照片,并计算灰度值的方差/平均值的比率。值越高表示聚类程度越高;较低的值可以描述为显示纳米管“更好”的分布,因此可以对结果进行排名。这种方法相对容易实施,但是必须注意使用厚度一致的小样品。其次,在确定观察到的每个纳米管的中心之后,正交分析使用相同材料的透射电子显微照片。这定义了纳米管规模上的分布。方差/平均值之比与像元大小之间的关系中的峰值与诸如团聚之类的微观结构特征有关。预期该比例与确定整体材料性能的微结构变形机制的比例有关。

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