铝-环氧复合材料的介电光谱对填料-颗粒微观结构影响的定量研究

G. X. Glenis, G. Papalabris, T. Argyropoulos, C. Dervos
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引用次数: 0

摘要

制备了不同微结构颗粒的含氧化铝环氧树脂复合材料圆柱锭,采用并联电容法研究了其在20 Hz ~ 1 MHz频率范围内的介电性能与表面下深度的关系。纳米多孔(90 Å)或无孔氧化铝颗粒,尺寸从63到200 μm不等,以不同含量(高达5% wt)作为复合填料混合。从圆柱形铸锭中提取晶圆样品,研究孔隙率对颗粒混合、分散性、沉淀的影响,以及在不同深度观察到的填料浓度与电响应的关系。实验结果表明,与无孔氧化铝相比,纳米孔诱导效应占主导地位,降低了有效相对介电常数,而耗散因子值不受影响。最后,氧化铝颗粒中纳米孔的存在引起了颗粒分层效应,随着孔浓度的增加,填充颗粒在成型材料的上层内分层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dielectric spectroscopy on alumina-epoxy composites towards the quantification of filler-particulate microstructure effects
Cylindrical ingots of epoxy resin composites containing alumina of various microstructure particulates were prepared and their dielectric properties were investigated by the parallel capacitance method in the frequency range 20 Hz - 1 MHz, as a function of depth below the surface. Nano-porous (90 Å), or non-porous alumina particulates, with sizes varying from 63 to 200 μm, were mixed as composite fillers at various contents (up to 5% wt). Sample-wafers were extracted from the cylindrical ingots to investigate the porosity induced effects on particulate mixing, dispersibility, precipitation, and relate filler concentration to the electrical response observed at various depths. According to the experimental results, the nano-pore induced effects dominate and reduce the effective relative dielectric constant compared to the non-porous alumina, while the dissipation factor values remain unaffected. Finally, the presence of nano-pores in the alumina particulates induces particle stratification effects and the filler particles with increased pore concentrations become stratified within the upper layer of the molded material.
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