Iqbal Muhammad Bilal, Khattak Abraiz, Ali Asghar, Raza M Hassan, Ullah Nasim, Alahmadi Ahmad Aziz, Khan Adam
U.S.-Pakistan Center for Advanced Studies in Energy, High Voltage Laboratory, National University of Sciences and Technology (NUST), Sector H-12, Islamabad 44000, Pakistan.
U.S.-Pakistan Center for Advanced Studies in Energy, Department of Energy System Engineering, National University of Sciences and Technology (NUST), Sector H-12, Islamabad 44000, Pakistan.
Polymers (Basel). 2021 Sep 17;13(18):3150. doi: 10.3390/polym13183150.
The emergence of micro and nano-based inorganic oxide fillers with optimal filler-loadings further enhances the required insulation characteristics of neat epoxy. During manufacturing and service application, insulators and dielectrics face mechanical stresses which may alter their basic characteristics. Keeping this in mind, the facts' influence of mechanical stresses and fillers on dielectric properties of polymeric insulators of two epoxy/silica composites were fabricated and thoroughly analyzed for dielectric characteristics under ramped mechanical compressions relative to the unfilled sample. Before compression, epoxy nanocomposites exhibited responses having an average dielectric constant of 7.68 with an average dissipation factor of 0.18. After each compression, dielectric properties of all samples were analyzed. The dissipation factor and the dielectric constant trends of each sample are plotted against a suitable frequency range. It was observed that after the successive compressions up to 25 MPa, the dielectric properties of epoxy micro-silica composites were highly affected, having an average final dielectric constant of 9.65 times that of the uncompressed sample and a dissipation factor of 2.2 times that of the uncompressed sample, and these were recorded.
具有最佳填充量的基于微纳的无机氧化物填料的出现,进一步提高了纯环氧树脂所需的绝缘特性。在制造和实际应用过程中,绝缘体和电介质会面临机械应力,这可能会改变它们的基本特性。考虑到这一点,制备了两种环氧/二氧化硅复合材料的聚合物绝缘体,并相对于未填充样品,在斜坡机械压缩下对其介电特性进行了全面分析,以研究机械应力和填料对其介电性能的影响。压缩前,环氧纳米复合材料的响应显示平均介电常数为7.68,平均损耗因数为0.18。每次压缩后,对所有样品的介电性能进行分析。将每个样品的损耗因数和介电常数趋势绘制在合适的频率范围内。观察到,在连续压缩至25MPa后,环氧微二氧化硅复合材料的介电性能受到很大影响,最终平均介电常数是未压缩样品的9.65倍,损耗因数是未压缩样品的2.2倍,并记录了这些数据。