聚酰亚胺纳米纤维的面积密度及其对环氧基纳米电介质性能的影响

O. Michal, V. Mentlík
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摘要

最近对可用于旋转机器的更薄、更耐磨的材料的需求,正在推动新一代材料的发展。传统的电绝缘材料包括多种复合材料,如树脂、云母和玻璃纤维布的组合。不幸的是,为了有效地利用大多数复合材料,必须使用厚层。这影响了空间电荷的积累和热导率。部分消除这一问题的手段之一是降低整个绝缘系统的厚度。另一方面,减少厚度会降低电气耐久性。近年来,纳米元件在各种应用中越来越受欢迎。本文介绍了将常用环氧树脂与新型无纺布聚合物纳米纤维材料和改性二氧化硅纳米颗粒相结合的实验。在本实验中,重点研究了纳米纤维的面积密度对复合材料电学参数的影响。在此基础上,发现了面积密度的影响。此外,较低的面积密度值对电参数的正影响略高。
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Area density of Polyimide Nanofibers and its Influence on the Properties of Epoxy Based Nanodielectrics
Recent demands for thin and more resistant materials, that can be used in rotating machines, is causing the evolution of the new generations of materials. Conventional electro-insulating materials include a variety of composite materials, such as the combination of resin, mica and glass fiber cloths. Unfortunately, for effective usage of most composite materials, the thick layer must be used. This affects the space charge accumulation and also thermal conductivity. One of the means to partially eliminate this problem is to reduce the thickness of the entire insulating system. On the other hand, reducing the thickness comes with the reduction of electrical durability. In recent years, the nanocomponents are gaining popularity in various applications. This article presents the experiment of using a combination of commonly used epoxy resin and novel types of non-woven polymer nanofiber materials and modified silicon dioxide nanoparticles. In this experiment, the emphasis was given to the influence concerning the area density of the nanofibers on the electrical parameters of the composite specimen. Based on the results, the influence of the area density has been found. Also, the lower values of the area density have a slightly higher positive effect on the electrical parameters.
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