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Sinusoidal and Triangular High-Voltage Neutralizers for Accelerated Discharge of Nonwoven Fibrous Dielectrics

机译:正弦和三角高压中和剂,用于加速非织造纤维介质的放电

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摘要

Electric charge accumulation on fibrous dielectric media during manufacturing processes can easily attain high levels of electrostatic hazard. In a previous paper, the authors addressed the problem of the accelerated discharge of such materials using a commercial ion generator. The aim of this paper is to evaluate the various factors that influence the efficiency of charge neutralization performed using a wire-type corona electrode energized from either a sinusoidal or a triangular ac high-voltage supply. The experiments were performed on 400- $muhbox{m}$-thick nonwoven sheets of polypropylene and polyester, in ambient air. The samples were charged for 10 s using a triode-type corona electrode system of negative polarity. The surface potential on the charged medium, which was in contact with the grounded electrode, was then measured with an electrostatic voltmeter. After 10 min, the medium was moved beneath a neutralizing electrode, connected to a high-voltage amplifier. The efficiency of the neutralization was quantified by the ratio between the surface potential after and prior to the charged sample exposure to ac corona discharge. The experimental design methodology was employed for evaluating the effects of two factors, namely, amplitude (range: 16–24 kV) and frequency (range: 20–400 Hz), of the neutralizing voltage. The potential at the surface of the nonwoven fabrics after neutralization was found to vary insignificantly with thermal conditioning and signal waveform but was significantly lower for higher frequencies and amplitudes.
机译:在制造过程中,电荷在纤维介质介质上的积聚很容易达到很高的静电危害。在先前的论文中,作者使用商用离子发生器解决了此类材料加速放电的问题。本文的目的是评估影响使用正弦或三角形交流高压电源供电的线型电晕电极执行电荷中和效率的各种因素。实验是在环境空气中在厚度为400-muhbox {m} $的聚丙烯和聚酯非织造片上进行的。使用负极性的三极管型电晕电极系统为样品充电10 s。然后用静电电压表测量与接地电极接触的带电介质上的表面电势。 10分钟后,将介质移至连接至高压放大器的中和电极下方。中和的效率通过带电样品暴露于交流电晕放电之后和之前的表面电势之比来量化。实验设计方法用于评估中和电压的两个因素的影响,即幅度(范围:16–24 kV)和频率(范围:20–400 Hz)。发现中和后非织造织物表面的电势随热调节和信号波形变化不明显,但对于较高的频率和振幅则明显降低。

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