Effect of ion current on transfer efficiency and appearance in the powder coating process

W. Chik, R. Sims, M. Mazumder, W. Guo, D. Wankum
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引用次数: 2

Abstract

Often, the formulation chemistry of powder is optimized based on functional and aesthetic requirements, such as UV protection, chip resistance, weatherability, and the glossiness of the powder coated film. Once the formulation chemistry of a powder is finalized, it becomes necessary to adjust the physical parameters of the powder and the application engineering processes for best appearance and highest transfer efficiency (TE). In this paper, theoretical aspects and experimental data are provided on the effect of ion current density on the charging of particles, TE, and appearance of the cured film. The onset of back corona as a function of the product of charge-to-mass ratio (Q/M) and the thickness of the powder layer on the conducting substrate are discussed. To examine the TE and appearance in the absence of free ion current, comparisons are made between the performance of corona charging and tribo charging guns.
粉末涂装过程中离子电流对传递效率和外观的影响
通常,粉末的配方化学是根据功能和美学要求进行优化的,例如防紫外线,抗切屑性,耐候性和粉末涂膜的光泽度。一旦粉末的配方化学确定,就有必要调整粉末的物理参数和应用工程过程,以获得最佳外观和最高的转移效率(TE)。本文提供了离子电流密度对粒子充电、TE和固化膜外观的影响的理论方面和实验数据。讨论了电荷质量比(Q/M)与导电基板上粉末层厚度乘积的反电晕起始函数。为了检验在没有自由离子电流的情况下的TE和外观,比较了电晕充电枪和摩擦充电枪的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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