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Attraction and Adhesion of a Charged Insulative Toner Particle

机译:带电的绝缘墨粉颗粒的吸引力和粘附力

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The force attracting a charged, insulative particle to a nearby surface is often calculated by assuming that the total charge is concentrated at the center of the particle. While this is true when the particle is far away, there is evidence that a different model should be used when the particle is very close, or in contact. This attractive force is calculated in terms of the bi-spherical coordinate system, which provides an analytical solution valid when the particle approaches and contacts the surface. Comparison of this model with other experimental and analytical work is carried out to determine the validity of the various models, and to provide approximate formulas useful in engineering work. This work indicates that electrostatic adhesive force may be larger than normally expected when the surface charging is larger than traditional assumption, as reported in several experiments.
机译:通常通过假设总电荷集中在粒子的中心来计算将带电的绝缘粒子吸引到附近表面的力。尽管当粒子距离很远时确实如此,但有证据表明,当粒子非常接近或接触时,应使用不同的模型。此吸引力是根据双球坐标系计算的,当粒子接近并接触表面时,该解析力提供了有效的分析解决方案。将该模型与其他实验和分析工作进行比较,以确定各种模型的有效性,并提供可用于工程工作的近似公式。这项工作表明,当表面电荷大于传统假设时,静电粘合力可能会比正常预期的要大,如一些实验所报道。

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