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A comparison between the dynamic and static ac conductivity characteristics of barium titanate filled acrylic resin

机译:钛酸钡填充丙烯酸树脂的动态和静态交流电导率特性比较

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摘要

The ac conductivity characteristics of a polymer can be enhanced through the inclusion of appropriate fillers into the polymer matrix. Previous studies have revealed that the inclusion of ferroelectric fillers, such as barium titanate, allows polymer composites to possess enhanced permittivities at elevated electrical field strengths. At certain filler levels and at certain electrical field strengths, the emergence of harmonics has been observed in the resultant current waveforms. Previous investigations into the static nonlinear conduction characteristics have been performed by measuring the peak current density and electrical field waveforms and calculating the permittivity at a range of peak electric field strengths. An alternative method of evaluating the field dependent permittivity nature of the composite resin is to consider the change in current density with the change in angle of the applied electrical field strength, for a particular peak value of electrical field strength. In this investigation, this dynamic nonlinear conductivity relationship is thus compared with the static nonlinear conductivity relationship, for the acrylic resin system which has been studied, at a variety of filler concentrations.
机译:可以通过在聚合物基体中包含适当的填料来增强聚合物的交流电导率特性。先前的研究表明,铁电填料(如钛酸钡)的加入使聚合物复合材料在提高的电场强度下具有更高的介电常数。在一定的填充水平和一定的电场强度下,在电流波形中观察到了谐波的出现。通过测量峰值电流密度和电场波形并计算峰值电场强度范围内的介电常数,可以对静态非线性传导特性进行先前的研究。评估复合树脂的取决于电场的介电常数性质的另一种方法是,对于特定的电场强度峰值,考虑电流密度随施加的电场强度的角度变化而变化。因此,在这项研究中,将这种动态非线性电导率关系与静态非线性电导率关系进行了比较,对于已研究的丙烯酸树脂体系,在各种填料浓度下,该静态非线性电导率关系都是如此。

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