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Fabrication of an Electrically-Resistive, Varistor-Polymer Composite

机译:电阻,压敏电阻-聚合物复合材料的制造

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This study focuses on the fabrication and electrical characterization of a polymer composite based on nano-sized varistor powder. The polymer composite was fabricated by the melt-blending method. The developed nano-composite was characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), field emission scanning electron microscopy (FeSEM), and energy-dispersive X-ray spectroscopy (EDAX). The XRD pattern revealed the crystallinity of the composite. The XRD study also showed the presence of secondary phases due to the substitution of zinc by other cations, such as bismuth and manganese. The TEM picture of the sample revealed the distribution of the spherical, nano-sized, filler particles throughout the matrix, which were in the 10–50 nm range with an average of approximately 11 nm. The presence of a bismuth-rich phase and a ZnO matrix phase in the ZnO-based varistor powder was confirmed by FeSEM images and EDX spectra. From the current-voltage curves, the non-linear coefficient of the varistor polymer composite with 70 wt% of nano filler was 3.57, and its electrical resistivity after the onset point was 861 KΩ. The non-linear coefficient was 1.11 in the sample with 100 wt% polymer content. Thus, it was concluded that the composites established a better electrical non-linearity at higher filler amounts due to the nano-metric structure and closer particle linkages.
机译:这项研究的重点是基于纳米压敏电阻粉末的聚合物复合材料的制造和电学表征。通过熔融共混法制造聚合物复合材料。通过X射线衍射(XRD),透射电子显微镜(TEM),场发射扫描电子显微镜(FeSEM)和能量色散X射线光谱(EDAX)对已开发的纳米复合材料进行了表征。 XRD图谱显示出复合物的结晶度。 XRD研究还表明,由于锌被其他阳离子(例如铋和锰)取代,因此存在次级相。样品的TEM图显示球形,纳米级填料颗粒在整个基体中的分布,它们在10–50 nm范围内,平均约11 nm。通过FeSEM图像和EDX光谱证实了ZnO基压敏电阻粉末中存在富铋相和ZnO基体相。从电流-电压曲线可知,具有70wt%的纳米填料的压敏电阻聚合物复合材料的非线性系数为3.57,并且其在起始点之后的电阻率为861KΩ。聚合物含量为100 wt%的样品的非线性系数为1.11。因此,可以得出结论,由于纳米结构和更紧密的颗粒键合,复合材料在较高的填充量下建立了较好的电非线性。

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