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Toner to Photoconductor Adhesion

机译:墨粉对光电导体的粘合

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摘要

The forces needed to remove monodisperse spherical toner particles form an organic photoconductor wee determined using electro- static detachment for a series of particles having diameters between 2μm and 12μm. It was found that the removal force varied linearly with particle radius, as predicted by JKR (Johnson, kendall and Roberts, Ref. 19). This result is inconsistent with the predic- tions of models that assume that the detachment forces re dominated by either a uniform charge distribution over the surface of the particle or localized charged patches. Moreover, reasonable works of adhesion are obtained if one assumes that the removal forces are dominated by surface, rather than electrostatic, forces. These results seem to suggest that, for spherical toner particles in this size range, adhesion may be dominated by van der Waals interactions.
机译:对于一系列直径在2μm和12μm之间的颗粒,通过静电分离确定去除单分散球形调色剂颗粒所需的力形成有机光电导体。如JKR所预测,发现去除力随颗粒半径线性变化(Johnson,kendall和Roberts,参考文献19)。该结果与模型的假设不一致,该模型的假设是,分离力主要由颗粒表面上均匀的电荷分布或局部带电斑块决定。而且,如果人们假设去除力是由表面力而不是静电力主导的,那么就可以获得合理的粘合效果。这些结果似乎表明,对于该尺寸范围内的球形调色剂颗粒,粘附力可能是范德华相互作用所决定的。

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