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首页> 外文期刊>Journal of Applied Physics >Dielectric relaxation in carbon black-epoxy composite materials
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Dielectric relaxation in carbon black-epoxy composite materials

机译:炭黑-环氧树脂复合材料的介电弛豫

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摘要

Filled polymers have been a fertile area for modeling studies of microwave dynamics, percolation, and elasticity network formation to mention but a few. To better understand the basic concepts relevant to wave transport in filled polymers, an experimental validation is paramount for theories that predict the dielectric response and, hence, the polarization mechanisms of these heterostructures. Reproducible measurements of the effective complex permittivity, at ambient temperature, are reported in the frequency range of 200 Hz-15 MHz for series of carbon black (CB)-epoxy composites that provide a detailed and quantitative characterization of the dielectric relaxation behavior. We provide observational evidence showing that dipolar relaxation and anomalous low-frequency dispersion are likely the transport mechanisms in these samples below and above percolation, respectively. The various fractional exponents of the power-law decay of these spectral models are analyzed, and Hill plots can be used to rationalize the effective complex permittivity observations for these series of samples. Our results have important implications for designing and optimizing engineered CB/polymer materials for a broad spectrum of engineering applications, e.g., solid broadband tissue simulant materials and electromagnetic absorbers.
机译:仅举几例,填充聚合物已成为模型研究微波动力学,渗流和弹性网络形成的肥沃领域。为了更好地理解与填充聚合物中的波传输有关的基本概念,对于预测介电响应以及这些异质结构的极化机理的理论,实验验证至关重要。据报道,一系列炭黑(CB)-环氧树脂复合材料在200 Hz-15 MHz的频率范围内,在环境温度下有效复介电常数的可重复测量,这些测量可提供介电弛豫行为的详细和定量表征。我们提供的观察证据表明,偶极弛豫和异常低频频散可能分别是这些样品在渗滤以下和以上的传输机制。分析了这些光谱模型的幂律衰减的各个分数指数,并且可以使用希尔图来合理化这些系列样品的有效复介电常数观测值。我们的结果对于为广泛的工程应用设计和优化工程CB /聚合物材料具有重要意义,例如固体宽带组织模拟材料和电磁吸收器。

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