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Adhesive strength distribution of charged particles on metal substrate in external electric field

机译:外部电场下金属基底上带电粒子的粘合强度分布

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An improved airflow method to measure the distribution of adhesive strength between charged particles and a metal substrate in an external electric field is presented. In this study, toner particles were negatively charged with a corona charger and deposited on the substrate. The substrate with the particles on the surface was mounted in a rectangular air channel with parallel electrodes. Air velocity was increased at a constant rate, and entrained particles were detected by a laser particle monitor. By studying the relationships between particle entrainment efficiency and air velocity, the particle-substrate adhesion was analyzed in detail. It was found that particle adhesion increased with the increase in the initial charge of particles. It was also found that the particle adhesion increased in a vertically downward electric field but decreased in the upward electric field. These experimental results cannot be explained by the Coulomb force in the electric field. Therefore, a theoretical model based on charge transfer in the external electric field was proposed. This model explains the variation of the particle-substrate adhesion by considering the image force arising due to the transferred charges. (C) 2014 The Society of Powder Technology Japan. Published by Elsevier B. V. and The Society of Powder Technology Japan. All rights reserved.
机译:提出了一种改进的气流法,用于测量外部电场中带电粒子与金属基板之间的粘合强度分布。在这项研究中,碳粉颗粒被电晕充电器带负电并沉积在基材上。将表面具有颗粒的基板安装在带有平行电极的矩形空气通道中。空气速度以恒定速率增加,并通过激光颗粒监测仪检测夹带的颗粒。通过研究颗粒夹带效率与空气流速之间的关系,详细分析了颗粒与基底的附着力。发现颗粒的粘附力随着颗粒的初始电荷的增加而增加。还发现在垂直向下的电场中颗粒粘附力增加,而在向上的电场中颗粒粘附力降低。这些实验结果不能用电场中的库仑力来解释。因此,提出了基于外部电场中电荷转移的理论模型。该模型通过考虑由于转移的电荷而产生的图像力来解释颗粒与基材之间的粘附力变化。 (C)2014日本粉末技术学会。由Elsevier B. V.和日本粉末技术学会出版。版权所有。

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