聚合物基质中碳纳米管的结构

G. Kozlov, G. Magomedov, G. Magomedov, I. Dolbin
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引用次数: 1

摘要

本文研究了碳纳米管在弹性基和玻璃基多环戊二烯/碳纳米管复合材料中的界面效应和增强能力的差异。总的来说,这表明聚合物纳米复合材料结构的增强元素是纳米填充剂和界面区域的结合。在纳米复合材料的聚合物基体中,碳纳米管形成环状结构。它们的半径很大程度上取决于纳米填料的体积含量。因此,聚合物/碳纳米管纳米复合材料的结构增强元素可以看作是涂有界面层的碳纳米管环状结构。它们的结构和性能不同于大块聚合物基体的特征。根据这一定义,环状地层的有效半径随着界面层厚度的增加而增加。反过来,聚合物基体和纳米填料之间的界面粘附水平是由特定碳纳米管形成的半径唯一决定的。对于所考虑的纳米复合材料,由于界面层更厚,弹性体基体比玻璃基体具有更高的增强程度。结果表明,环形纳米管结构可以成功地模拟成支链聚合物大分子线圈的结构模拟物。这使得评估纳米填料在纳米复合材料聚合物基体中的有效(真实)各向异性水平成为可能。当纳米填料含量一定时,以纳米管长宽比为特征的纳米填料含量决定了纳米复合材料的增强程度
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The structure of carbon nanotubes in a polymer matrix
We carried out an analytical structural analysis of interfacial effects and differences in the reinforcing ability of carbon nanotubes for polydicyclopentadiene/carbon nanotube nanocomposites with elastomeric and glassy matrices. In general, it showed that the reinforcing (strengthening) element of the structure of polymer nanocomposites is a combination of the nanofiller and interfacial regions. In the polymer matrix of the nanocomposite, carbon nanotubes form ring-like structures. Their radius depends heavily on the volume content of the nanofiller. Therefore, the structural reinforcing element of polymer/carbon nanotube nanocomposites can be considered as ring-like formations of carbon nanotubes coated with an interfacial layer. Their structure and properties differ from the characteristics of the bulk polymer matrix.According to this definition, the effective radius of the ring-like formations increases by the thickness of the interfacial layer. In turn, the level of interfacial adhesion between the polymer matrix and the nanofiller is uniquely determined by the radius of the specified carbon nanotube formations. For the considered nanocomposites, the elastomeric matrix has a higher degree of reinforcement compared to the glassy matrix, due to the thicker interfacial layer. It was shown that the ring-like nanotube formations could be successfully modelled as a structural analogue of macromolecular coils of branched polymers. This makes it possible to assess the effective (true) level of anisotropy of this nanofiller in the polymer matrixof the nanocomposite. When the nanofiller content is constant, this level, characterised by the aspect ratio of the nanotubes, uniquely determines the degree of reinforcement of the nanocomposites
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