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Sinusoidal, Triangular, or Square Alternating Voltages Neutralization of Electrostatic Charges on the Surface of Polypropylene Nonwoven Fabric

机译:正弦,三角形或正方形交流电压中和聚丙烯无纺布表面上的静电

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摘要

The most widely used techniques for neutralizing the static charge at the surface of insulating bodies make use of the bipolar ions generated in an ac corona discharge. The aim of the present work is to evaluate the efficiency of the neutralization achieved with a corona electrode energized from a generator of sinusoidal, triangular and square ac voltages of various amplitudes and frequencies. The experiments were performed on 120 mm 90 mm samples that were cut from the same nonwoven polypropylene (PP) fabric. The samples were charged for 10 s, in ambient air, using a triode-type corona electrode system of positive polarity. The neutralization was performed 300 s after the charging process, with the samples moving at constant speed (3 cm/s) in the ac corona discharge zone. The electric potential distribution at the surface of the samples was measured with an electrostatic voltmeter (model 3450, Trek Inc., Medina, NY). The efficiency of the neutralization was evaluated by calculating the inverse ratio between the maximum absolute values of the potential before and just after the neutralization. The amount and the polarity of the residual charge after neutralization depend on the frequency, amplitude, and type of ac voltage. The results show that an excellent neutralization can be obtained for any of the three wave shapes of ac voltage, at industrial frequency (i.e., 50 Hz) by varying the amplitude of the offset.
机译:中和绝缘体表面静电荷的最广泛使用的技术是利用在交流电晕放电中产生的双极离子。本工作的目的是评估由电晕电极实现的中和效率,该电晕电极由各种振幅和频率的正弦,三角形和正方形交流电压发生器供电。实验是从相同的非织造聚丙烯(PP)织物上切下的120 mm 90 mm样品上进行的。使用正极性的三极管型电晕电极系统,在环境空气中为样品充电10 s。在充电过程后300 s进行中和,样品以恒定速度(3 cm / s)在交流电晕放电区域中移动。用静电电压表(3450型,Trek Inc.,Medina,NY)测量样品表面的电势分布。通过计算中和前后电位的最大绝对值之间的反比来评估中和的效率。中和后残留电荷的数量和极性取决于交流电压的频率,幅度和类型。结果表明,通过改变偏移的幅度,在工业频率(即50Hz)下,对于交流电压的三种波形中的任何一种波形都可以得到优良的中和作用。

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