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Uniformly dispersed submicrometric BaTiO3 particles in HDPE based composites morphology, structure and dielectric properties

机译:HDPE基复合材料中均匀分散的亚微米BaTiO3颗粒的形态,结构和介电性能

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摘要

The use of nanofillers to induce certain changes in electrical properties of polymeric materials, show great interest for electronic and electrical engineering applications. In this paper, composites of HDPE filled with submicrometric particles of tetragonal BaTiO3 have been prepared. An extraordinary uniform dispersion of the particles was achieved from a first process of mixing by high energy ball milling and subsequent hot pressing. Some electric measurements such as dielectric strength and resistivity were carried out to evaluate the final electrical properties as a function of the processing and the amount of BaTiO3 particles. It was observed how the resistivity decreases when the amount of BaTiO3 increases. Besides, the dielectric strength decreases as the amount of BaTiO3 particles increases. Finally it was observed that as the BaTiO3 content increases the cylindrical-like “conducting channel”, in which the dielectric failure happens, disappears, occurring a dielectric breakdown with a less regular shape.
机译:纳米填料的使用引起聚合物材料电性能的某些变化,对电子和电气工程应用显示出极大的兴趣。本文制备了填充有四方BaTiO 3 亚微米级颗粒的HDPE复合材料。通过高能球磨和随后的热压混合的第一个过程,获得了非常均匀的颗粒分散。进行了一些电学测量,例如介电强度和电阻率,以评估最终电学性质与加工过程以及BaTiO 3 颗粒数量的关系。观察到当BaTiO 3 的量增加时电阻率如何降低。此外,介电强度随BaTiO 3 颗粒数量的增加而降低。最终观察到,随着BaTiO 3 含量的增加,其中发生电介质破坏的圆柱状“导电通道”消失,从而发生了规则形状较差的电介质击穿。

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