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Repartition of Electric Potential at the Surface of Nonwoven Fabrics for Air Filtration

机译:空气过滤非织造布表面的电势分配

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Electric charging of nonwoven materials employed as filter media improves their particle collection efficiency by the electrostatic particle capture mechanism that enhances the conventional mechanical filtration without causing an increase of the pressure drop. The aim of this paper is to provide a better understanding of the corona-charging process of such materials, by analyzing some of the factors that affect the repartition of the electric potential at the surface of the respective media. The experiments were carried out on two types of polypropylene samples: nonwoven fabrics and films. The experimental results show that the area occupied by the charge increases with both the charging voltage to the corona electrode and the duration of the charging process. The same area increases also with the time elapsed from the end of the charging, which points out the charge redistribution at the surface of the media by a surface conduction mechanism.
机译:用作过滤介质的非织造材料带电可通过静电颗粒捕获机制提高其颗粒收集效率,该机制可增强传统的机械过滤功能,而不会导致压降增加。本文的目的是通过分析影响相应介质表面电位重新分配的一些因素,从而更好地理解此类材料的电晕充电过程。实验是在两种类型的聚丙烯样品上进行的:非织造织物和薄膜。实验结果表明,电荷所占的面积随电晕电极的充电电压和充电过程的持续时间而增加。相同的面积也随着充电结束所经过的时间而增加,这表明电荷通过表面传导机制在介质表面重新分布。

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