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Space charge in polypropylene containing synthetic nano particles

机译:含合成纳米颗粒的聚丙烯中的空间电荷

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Polypropylene is extensively used as a dielectric in power capacitors, electrical machines and transformers. It has excellent mechanical, thermal, and electrical properties and provides outstanding resistance to moisture, grease, and oils. It does not present stress-cracking problems and at high temperatures it offers better thermal and chemical resistance than polyethylene. A thermoplastic such as polypropylene can be reinforced with small quantities of nanoparticles to not only achieve better chemical and thermal properties but also improved dielectric performance, such as high electrical breakdown strength, low surface and volume conductivity and resistance to partial discharges. The space charge properties of a structural nanocomposite based on layered synthetic silicate embedded in polypropylene (PP) are described in this paper. Electroluminescence emission, dissipation current measurement and pulsed electro-acoustic technique are employed to compare the properties of PP with and without the nanoparticles.
机译:聚丙烯被广泛用作功率电容器,电机和变压器中的电介质。它具有出色的机械,热和电性能,并具有出色的抗潮,抗油脂和抗油性。它没有应力开裂问题,并且在高温下比聚乙烯具有更好的耐热性和耐化学性。热塑性塑料(例如聚丙烯)可以用少量的纳米颗粒增强,不仅可以实现更好的化学和热性能,而且可以改善介电性能,例如高电击穿强度,低表面和体积电导率以及对局部放电的抵抗力。本文描述了一种结构化的纳米复合材料,其基于嵌入聚丙烯(PP)中的层状合成硅酸盐的空间电荷特性。采用电致发光发射,耗散电流测量和脉冲电声技术来比较具有和不具有纳米颗粒的聚丙烯的性能。

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