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Conduction currents and time to frequency domain transformation for epoxy resin nanocomposites

机译:环氧树脂纳米复合材料的导通电流和频域变换的时间

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This paper concerns several epoxy resin nanocomposites. A DER 332 epoxy resin was chosen as matrix and nanosilica and/or Boron Nitride were chosen as fillers. Conduction currents results obtained using Polarization and Depolarization Current (PDC) tests at room temperature are presented and discussed. Different conduction phenomena were observed following the analysis of the variation of the current density versus the applied electric field. Using the depolarization currents obtained at room temperature under several applied electric fields, time to frequency domain transformation was performed. For this purpose, the currents were fitted using a general time response function based on Curie-von Schweidler law and on the transform proposed by Hamon. The empiric law proposed by Helegeson was also investigated. The time to frequency domain transformed spectra were compared with those obtained by Dielectric Spectroscopy.
机译:本文涉及几种环氧树脂纳米复合材料。选择DER 332环氧树脂作为基质,纳米硅烷和/或氮化硼作为填料。提出并讨论了在室温下使用偏振和去极化电流(PDC)测试获得的导通电流的导通电流。在分析电流密度与所施加的电场的变化之后,观察到不同的传导现象。在几个施加的电场下使用在室温下获得的去极化电流,进行频域变换的时间。为此目的,使用基于Curie-Von Schweidler Lave的一般时间响应功能以及Hamon提出的变换来安装电流。还调查了Helegeson提出的经验法。将频域变换的频谱的时间与通过介电光谱获得的时间进行比较。

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