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Particle size, cohesiveness and charging effects on electrostatic and nonelectrostatic powder coating

机译:静电和非静电粉末涂料的粒度,内聚力和带电效应

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摘要

Ten powders, differing in protein, carbohydrate and salt contents and ranging from 19 to 165 mu m were coated by nonelectrostatic and electrostatic coating. Nonelectrostatic transfer efficiency (TE) increased to a maximum before leveling off with increasing particle size. Electrostatic TE either decreased or increased then decreased with increasing particle size. Powders became more free flowing as particle size increased. Since TE increases as powders become more free flowing, TE increased with particle size for both nonelectrostatic and electrostatic coating. For electrostatic coating, the effect of charge decreases with increasing particle size. Thus, the conflicting effects of ability to pick up charge and flowability caused an increase then decrease in the TE for powders coated electrostatically, and can also explain the exceptions. The average improvement in TE by electrostatic coating was 20%, with the improvement increasing as particle size decreased. (c) 2007 Elsevier B.V. All rights reserved.
机译:用非静电和静电涂层涂覆十种粉末,这些粉末的蛋白质,碳水化合物和盐含量不同,范围从19到165μm。随着颗粒尺寸的增加,非静电转移效率(TE)达到最大值,然后趋于平稳。静电TE随粒径的增加而降低或升高,然后降低。随着粒度的增加,粉末变得更加自由流动。因为随着粉末变得更加自由流动,TE增大,所以非静电和静电涂层的TE随粒径增大而增大。对于静电涂层,电荷的影响随着粒径的增加而降低。因此,电荷吸收能力和流动性的冲突影响导致静电涂覆粉末的TE升高然后降低,这也可以解释例外情况。通过静电涂层在TE上的平均改善为20%,随着粒径的减小,改善的增加。 (c)2007 Elsevier B.V.保留所有权利。

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