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Influence of low amounts of nanostructured silica and calcium carbonate fillers on the large-area dielectric breakdown performance of bi-axially oriented polypropylene

机译:少量纳米结构二氧化硅和碳酸钙填料对双轴取向聚丙烯大面积介电击穿性能的影响

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摘要

Influence of low amounts (1.0-2.0wt-%) of nanostructured silica and calcium carbonate fillers on the large-area dielectric breakdown performance of bi-axially oriented polypropylene (BOPP) is analyzed. A multi-breakdown measurement method based on the self-healing breakdown capability of metallized film is utilized for the breakdown characterization in order to cover relatively large total film areas, thus leading to results of higher relevance from the practical point-of-view. The dispersion and distribution qualities of filler particles at the nanoscale are evaluated with transmission electron microscopy (TEM) imaging. Weibull statistical analysis suggests that the breakdown distribution homogeneity can be improved with both the filler types. The 1.0wt-% silica-BOPP composite also shows a shift of the weakest points towards higher dielectric strength in comparison to the neat BOPP. However, with increasing filler content, new failure modes are introduced into the nanocomposites, hence decreasing the overall breakdown performance in the >5% breakdown probability region in comparison to the un-filled reference BOPP film.
机译:分析了少量(1.0-2.0wt%)的纳米结构二氧化硅和碳酸钙填料对双轴取向聚丙烯(BOPP)的大面积介电击穿性能的影响。为了覆盖较大的总膜面积,使用了基于金属化膜的自愈击穿能力的多重击穿测量方法来进行击穿表征,因此从实用的角度来看,具有更高的相关性。用透射电子显微镜(TEM)成像评估了纳米级填料颗粒的分散和分布质量。威布尔统计分析表明,两种填料类型均可改善击穿分布的均匀性。与纯BOPP相比,1.0wt%的二氧化硅-BOPP复合材料还显示出最薄弱点向更高介电强度的转变。然而,随着填料含量的增加,新的破坏模式被引入到纳米复合材料中,因此与未填充的参比BOPP薄膜相比,在> 5%的击穿概率范围内降低了整体击穿性能。

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