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Factors that influence the corona charging of fibrous dielectric materials

机译:影响纤维介电材料电晕充电的因素

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摘要

Corona discharge has a wide range of industry applications, such as charging the photosensitive layer and the toner particles in photocopying machines, modifying the wet-ability of plastic films, and conditioning the electrets for air filters. In all these situations, it is important to evaluate the surface charge density and compare it to the dielectric rigidity of atmospheric air. Experiments were carried out on 0.3 mm and 0.8 mm thick non-woven polypropylene fibrous media (average diameter of the fibres: 20 mu m) that were exposed to positive corona discharges from a wire-grid-plate electrode system. The electrode system was powered from a continuously-adjustable DC high-voltage supply, employed as constant current generator. 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 and the pre-conditioning temperature of the samples. 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 operating conditions.
机译:电晕放电在工业上具有广泛的应用,例如在影印机中为感光层和调色剂颗粒充电,改变塑料薄膜的湿润性以及调节空气过滤器的驻极体。在所有这些情况下,评估表面电荷密度并将其与大气的介电刚度进行比较非常重要。在暴露于来自线栅板电极系统的正电晕放电的0.3毫米和0.8毫米厚的非织造聚丙烯纤维介质(纤维的平均直径:20μm)上进行了实验。电极系统由连续可调的直流高压电源供电,用作恒流发生器。监控变量是静电电压表的探针检测到的表面电势。受控变量是栅极的电势和样品的预处理温度。实验的结果使得能够粗略评估每个因素的影响。为了建立最佳的工作条件,应继续使用实验设计方法进行研究。

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