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Effect of Fluorination and Isothermal Crystallization on Polypropylene Electret Fiber Films for Transformer-oil Filtration

机译:氟化和等温结晶对变压器油过滤聚丙烯驻极体纤维膜的影响

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Nonwoven Polypropylene(PP) electret film is widely used for filtration due to its excellent filtration performance resulting from the electrostatic attraction between electret fibers and impurities. In this work, nonwoven PP films were fluorinated in F2/N2mixture gas and isothermally crystallized in an oven with elevated temperature. A point-grid-plate electrode system was utilized to prepare the electret PP filtration films by corona charging. The results from Fourier-Transform Infrared (FTIR) spectrum and Scanning Electron Microscopy (SEM) evidenced that hydrogen atoms had been replaced by fluorine atoms in the surface of the PP fibers during the fluorination reaction. It was also found that the fluorination lead to increased roughness of the PP fibers. The initial surface potential of the fluorinated PP film after corona charging was slightly higher than that of the nonfluorinated film. However, the former one showed higher decay rate than the latter at 90°C. The isothermal crystallization on the fluorinated PP films significantly improved the charge stability. This should be attributed to the increase of the crystallinity and the density of deep traps introduced during isothermal crystallization. After filtration using the fluorinated and isothermally crystallized PP electret films, the relative permittivity $arepsilon_{r}$ and the loss factor tan$delta$ of the aged transformer oil decreased to a low level that was almost identical to the new transformer oil.
机译:非织造聚丙烯(PP)驻极体薄膜由于驻极体纤维和杂质之间的静电吸引而具有出色的过滤性能,因此被广泛用于过滤。在这项工作中,非织造PP薄膜在F中氟化 2 / N 2 混合气体,并在高温烘箱中等温结晶。利用点栅板电极系统通过电晕充电制备驻极体PP滤膜。傅立叶变换红外(FTIR)光谱和扫描电子显微镜(SEM)的结果表明,在氟化反应过程中,氢原子已被PP纤维表面的氟原子取代。还发现氟化导致PP纤维的粗糙度增加。电晕充电后的氟化PP膜的初始表面电势略高于非氟化膜的初始表面电势。但是,前者在90°C时显示出比后者更高的衰减率。氟化PP膜上的等温结晶显着提高了电荷稳定性。这应该归因于结晶度的增加和在等温结晶过程中引入的深阱的密度。使用氟化和等温结晶的PP驻极体薄膜过滤后,老化的变压器油的相对介电常数$ \ varepsilon_ {r} $和损耗因子tan $ \ delta $降低到几乎与新变压器油相同的水平。 。

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