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首页> 外文期刊>Journal of Imaging Science and Technology >Adhesion Of Silica-coated Toner Particles To Bisphenol-a Polycarbonate Films: Effect Of Toner Charge
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Adhesion Of Silica-coated Toner Particles To Bisphenol-a Polycarbonate Films: Effect Of Toner Charge

机译:二氧化硅包衣的碳粉颗粒对双酚-a聚碳酸酯薄膜的附着力:碳粉电荷的影响

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Particles of electrophotographic toner (black, silica-coated, number-weighted, and volume-weighted median diameters of 6.5 and 8.0 μm, respectively), having two different charge levels (nominally 30 and 55 μC/g), were electrostatically developed on the surface of a film of bisphenol-A polycarbonate coated on nickelized polyethylene terephthalate. The thickness of the coatings varied from 0.8 to 22.0 μm. The force needed to remove the particles was determined using ultracentrifugation. We found that removal of half of the particles from the film surface required a force of approximately 200 nN for all charge levels and film thickness except for the highest charged particles on the thinnest film. These results indicate that, for toner particles of this size, which typically have a charge of approximately 20-25 μC/g, adhesion is dominated by van der Waals interactions. However, for highly charged particles, electrostatic interactions can also significantly contribute to the adhesion forces.
机译:具有两种不同电荷水平(标称值为30和55μC/ g)的电子照相碳粉颗粒(分别为黑色,二氧化硅涂层,数量加权和体积加权的中值直径分别为6.5和8.0μm)被静电显影。涂在镀镍聚对苯二甲酸乙二醇酯上的双酚A聚碳酸酯薄膜的表面。涂层的厚度在0.8至22.0μm之间变化。使用超速离心确定去除颗粒所需的力。我们发现,对于所有电荷水平和膜厚度,从膜表面除去一半的颗粒都需要大约200 nN的力,除了最薄的膜上带电最高的颗粒。这些结果表明,对于通常具有大约20-25μC/ g的电荷的这种尺寸的调色剂颗粒,粘附力主要由范德华力相互作用。但是,对于带高电荷的颗粒,静电相互作用也可以显着地增加粘附力。

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