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Three-Dimensional Numerical Studies on the Effect of the Particle Charge to Mass Ratio Distribution in the Electrostatic Coating Process

机译:粒子电荷对静电涂装过程中质量比分布的影响的三维数值研究

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Charge to mass ratio is a crucial parameter that governs the behavior of particle trajectories in a charged cloud of particles. The complex nature of the charging process limits our ability to accurately determine the charging level when particles of varying size are present. Using a numerical approach, it is possible, however, to take into account predefined values for this parameter. In this paper, the average charge to mass ratio and the distribution of the charge to mass ratio in the coating of a flat target were systematically varied to demonstrate their effect on the motion of the charged particles. The results show that the transfer efficiency increases as the average charge to mass ratio increases. It was found that the transfer efficiency is a weak function of the average particle size in the range tested and that it increases as the width of the size distribution increases.
机译:质量比率是一个关键参数,可以控制粒子轨迹在带电颗粒云中的行为。充电过程的复杂性质限制了我们在存在不同尺寸的粒子时准确地确定充电水平的能力。但是,使用数值方法,可以考虑该参数的预定义值。在本文中,系统地改变了平均比的平均电荷和质量比在涂层涂层中对质量比的分布,以证明它们对带电粒子的运动的影响。结果表明,随着质量比的平均电荷增加,转移效率增加。结果发现,转移效率是测试的范围中的平均粒度的弱功能,并且随着尺寸分布的宽度增加而增加。

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