An electrostatic field driven ionizer for a moving charged target

T. Sugimoto, K. Furutachi, Y. Higashiyama
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引用次数: 1

Abstract

A DC ionizer specifically designed for a moving charged target is proposed. The ionizer, which is proximally positioned to the charged target, is composed of a grounded mesh electrode and an array of positive and negative needle electrodes. The positive and negative needles face each other to make a high space charge density of positive and negative ions just above the grounded mesh. The electric field formed between the grounded mesh and the charged target transports ions by field drag force. The field drag force has a faster charge elimination rate than the air drag force widely used in commercial ionizers. An evaluation method of the charge elimination for a moving target is also proposed. The method employs parameters of capacitance of the target, equivalent resistance of the ionized air, effective length of the ionizing zone and moving speed of the target. The performance of the proximally positioned ionizer and a commercial fan type ionizer were compared using the evaluation method. The proximally positioned ionizer was found to have significantly higher performance than the commercial fan type ionizer.
一种用于移动带电目标的静电场驱动电离器
提出了一种专为移动带电目标设计的直流电离器。电离器位于带电目标的近端,由接地的网状电极和正、负针状电极阵列组成。正负极针相互面对,使正负离子的空间电荷密度高,正好在接地网的上方。在接地网和带电目标之间形成的电场通过场阻力传输离子。电场阻力比商用电离器中广泛使用的空气阻力具有更快的电荷消除速率。提出了一种运动目标电荷消除的评价方法。该方法采用目标的电容、电离空气的等效电阻、电离区有效长度和目标的移动速度等参数。采用评价方法对近端定位电离器和商用风扇型电离器的性能进行了比较。发现近端定位的电离器比商用风扇型电离器具有显著更高的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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