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Shielding Effectiveness Density Theory for Carbon Fiber/ Nylon 6,6 Composites

机译:碳纤维/尼龙6,6复合材料的屏蔽效能密度理论

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We present a simple density theory based on first principles that predicts the shielding effectiveness of composite matrix materials at filler loadings near or above the percolation threshold.Such a model has practical applications in electromagnetic interference and radio frequency interference,and is validated here for Fortafil 243 carbon fiber within nylon 6,6.In brief,the theory predicts that the most important parameter on the shielding effectiveness of a sample is the carbon fiber volume percent.At very high filler loadings,experimental results show a weak dependence on the frequency of the wave to be shielded,which may be attributed to enhanced reflection from multiple,coherent scatterers(carbon fiber network).These effects are not considered in our model.Nevertheless,advantages of this model are ease of use and improved predictive capabilities when compared to models previously reported in the literature.Our model performs very well over an electrical resistivity range from 10~(-15)ohm-cm(at low filler loading levels below the percolation threshold)down to 10~(-1)ohm-cm(at high filler loading levels well above the percolation threshold),and can be used to determine filler loadings needed to provide a certain level of shielding of electromagnetic waves.
机译:我们基于第一原理提出了一种简单的密度理论,该理论预测了复合基质材料在接近或高于渗透阈值的填料载荷下的屏蔽效果。这样的模型在电磁干扰和射频干扰中具有实际应用,并在此处针对Fortafil 243进行了验证尼龙6,6中的碳纤维。简而言之,该理论预测对样品的屏蔽效果最重要的参数是碳纤维的体积百分比。在很高的填充量下,实验结果表明对碳纤维频率的依赖性较弱。要屏蔽的电磁波,可能是由于来自多个相干散射体(碳纤维网络)的反射增强所致。在我们的模型中未考虑这些影响。尽管如此,与模型相比,该模型的优点是易于使用和改进的预测能力我们的模型在电阻率范围为10〜 (-15)ohm-cm(在低于渗滤阈值的低填料量时)低至10〜(-1)ohm-cm(在高于渗滤阈值的高填料量时),可用于确定填料量需要提供一定水平的电磁波屏蔽。

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