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Comparison of Toner Adhesion Theories

机译:墨粉附着力理论的比较

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摘要

Recent measurements of toner adhesion have been reported [Dejesus et al., J. Imag. Sci. Technol. 52, 010503 (2008)] in which the ground plane was separated from the charged toner particles by a thin dielectric coating of varying thickness (0.8, 4.5, 9, and 22 μm thick), which is less than and approximately equal to the diameter of the toner particles used in the experiment, 7.1 μm. It is claimed that such data can be understood only in terms of an adhesion theory based on van der Waals adhesion. It is demonstrated in this article that the data are, in fact, consistent with the Proximity Theory of toner adhesion, which is an electrostatic theory of toner adhesion that assumes that there is electrostatic adhesion at every contact point due to the discreteness of charge. Combining this result with a comparison of theories of toner adhesion with data showing the effects on toner adhesion of changing the toner charge-to-mass ratio and the extraparticulate concentration leads to the conclusion that the Proximity Force dominates toner adhesion.
机译:已经报道了调色剂粘附的最新测量[Dejesus等,J.Imag。科学技术。 52,010503(2008)],其中接地平面通过厚度可变(0.8、4.5、9和22μm)的介电涂层与带电的碳粉颗粒分开,该厚度小于且近似等于直径实验中使用的色粉颗粒为7.1μm。要求仅根据基于范德华粘附力的粘附理论可以理解这种数据。本文证明,这些数据实际上与墨粉附着力的邻近理论相一致,该理论是墨粉附着力的静电理论,它假设由于电荷的离散性在每个接触点都存在静电附着力。将该结果与墨粉附着力理论的比较结果相结合,该数据显示了更改墨粉荷质比和微粒外浓度对墨粉附着力的影响,得出结论,接近力占主导地位。

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