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Trapped and transverse motion of a charged particle within tilted electrodes in silicone oil

机译:带电粒子在硅油中倾斜电极内的带电粒子的捕获和横向运动

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As for seeking practically applicable electrode configuration to remove conductive particles from liquefied plastics, the conductive particle motion in the tilted electrode system has been carefully investigated. A charged particle shows up-and-down motion between electrodes. Depending on the applied voltage, a particle transverses either toward narrower gap or the wider gap. Between those two modes, there is a steady upand-down motion. This trapped position is gradually shifted toward wider gap side with the increase of the applied voltage. One of interesting results is that the electric field at the trapped position is almost constant, 1.6~1.8 MV/m nevertheless the trapped position shifts. The numerical calculation for the trapped position reveals that the trapped position with experiment is located somewhat in the narrower gap side than the calculated value. Assuming that the particle charge is 40~60 % of the theoretical prediction, the calculated trapped position is in good agreement with the experiment results.
机译:对于寻求实际应用的电极构造以从液化塑料中去除导电颗粒,已经仔细研究了倾斜电极系统中的导电颗粒运动。带电粒子在电极之间显示出上下运动。根据施加的电压,粒子横向缩小间隙或更宽的间隙。在这两种模式之间,存在稳定的升高动作。随着施加的电压的增加,该捕获位置逐渐朝向更宽的间隙侧移动。有趣的结果是,捕获位置处的电场几乎是恒定的,因此捕获的位置偏移1.6〜1.8 mV / m。捕获位置的数值计算揭示了具有实验的被捕获的位置位于比计算值更窄的间隙侧。假设粒子电荷为理论预测的40〜60%,所计算的陷阱位置与实验结果吻合良好。

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