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Accelerated Discharge of Corona-charged Non-woven Fabrics

机译:电晕带电无纺布的加速排放

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Fibrous polymers with extremely low electrical conductivity as polypropylene, polycarbonate, polyurethane and polyethylene are commonly employed as air-filter materials. The charge accumulated on such materials due to tribocharging effects inherent to the manufacturing process might be harmful either to the operator or to the electronic equipment of the production line. Whenever charge build-up cannot be avoided, it is important to dispose of effective means to rapidly discharge the materials. The present work aims to evaluate the efficiency of active neutralization of charged nonwoven fabrics. The experiments have been carried out on 0.3 mm thick polypropylene (PP) and polyester (PE) fibrous media, the average diameter of the two types of fibers being 28 μm and 19 μm respectively. The non-woven fabrics were charged by exposing them to a negative corona discharge generated by a wire - grid - plate electrode system. The samples, laid on the surface of the grounded electrode or suspended at a small distance (4.6 mm) above it, were then subjected to the action of the bi-polar ions generated by a commercial neutralizer (model 6430, Ion Systems Inc., Berkeley, CA). The monitored variable was the surface potential detected by the probe of an electrostatic voltmeter. The controlled variables were the potential of the grid electrode, the neutralisation time, and the distance between the neutralizer and the media. The results of the experiments enabled a crude evaluation of each factor effect. Research should continue, using the experimental design methodology, in order to establish the optimum conditions for charge neutralization.
机译:具有极低导电性作为聚丙烯,聚碳酸酯,聚氨酯和聚乙烯的纤维聚合物通常用作空气过滤材料。由于制造过程所固有的摩擦效应而累积在这种材料上的电荷可能对操作员或生产线的电子设备有害。每当无法避免充电积聚时,要处理有效手段,以便快速排出材料。本作者旨在评估带电无纺布的主动中和的效率。实验已经在0.3mm厚的聚丙烯(PP)和聚酯(PE)纤维介质上进行,两种类型的纤维的平均直径分别为28μm和19μm。通过将它们暴露于由丝电压板电极系统产生的负电晕放电来充电的非织造织物。然后铺设在接地电极的表面上或悬浮在其上方的小距离(4.6mm)上的样品进行由商业中和剂产生的双极离子(Model 6430,Ion Systems Inc.,伯克利,加利福尼亚州)。被监视的变量是由静电电压表的探针检测的表面电位。受控变量是栅电极,中和时间和中和剂和介质之间的距离的电位。实验结果使每个因子效应的粗略评估能够。研究应继续,使用实验设计方法,以便建立充电中和的最佳条件。

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