首页> 外文会议>Nanotechnology (IEEE-NANO), 2011 11th IEEE Conference on >Electromagnetic modelling and experimental characterization of carbon-based nanocomposites
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Electromagnetic modelling and experimental characterization of carbon-based nanocomposites

机译:碳基纳米复合材料的电磁建模和实验表征

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摘要

Carbon nanostructures such as carbon nanotubes and graphite nanoplatelets can be included in very low weight percentages in a polymer matrix to create new lightweight nanocomposites with improved performances. The development of simulation models for the prediction of the effective complex permittivity of such composites is very important for design and performance optimization purposes. In this study we propose a multiscale expression of Maxwell Garnett formula, with the aim of modeling the effective permittivity of multifiller composites, including multiwall carbon nanotubes or graphite nanoplatelets at the nanoscale, and nickel-coated short carbon fibers at the micro/macro-scale. A statistical model is also implemented in order to account for variations of the filler geometrical properties, which cannot be fully controlled at the synthesis level, in particular at the nanoscale.
机译:可以以非常低的重量百分比将诸如碳纳米管和石墨纳米片之类的碳纳米结构包含在聚合物基质中,以产生具有改进性能的新型轻质纳米复合材料。为了预测此类复合材料的有效复介电常数,开发仿真模型对于设计和性能优化非常重要。在这项研究中,我们提出了麦克斯韦·加内特(Maxwell Garnett)公式的多尺度表达,目的是模拟多层复合材料的有效介电常数,包括纳米级的多壁碳纳米管或石墨纳米片以及微观/宏观级的镍包覆短碳纤维。 。为了解决填料几何性质的变化,还实现了统计模型,所述填料几何性质的变化不能在合成水平上,特别是在纳米级上被完全控制。

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