液中帯電粒子の電気泳動現象と電極反応を利用したコロイド成膜プロセス

Tetsuo UCHIKOSHI
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Abstract

Electrophoresis of particles by applying an electric field to a colloidal suspension allows simultaneous manipulation and shaping of particles. A film forming process utilizing the electrophoretic phenomenon of charged particles in a liquid is called “electrophoretic deposition (EPD)” and is used for powder coating. The main difference between the EPD process and other colloidal processes is the coexistence of electrode reactions, ie electrochemical reactions that occur at the interface between the electrode and the electrolyte solution. The applied electric field in the EPD method plays an important role not only in the electrophoresis of charged particles but also in controlling the coagulation mechanism and film quality. This paper introduces the principle of the EPD process considering the electrode reaction and an example of the functional film formation process.
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利用液中带电粒子的电泳现象和电极反应的胶体成膜过程
通过对胶体悬浮液施加电场对颗粒进行电泳,可以同时操纵和塑造颗粒。利用液体中带电粒子的电泳现象形成薄膜的过程称为“电泳沉积(EPD)”,用于粉末涂层。EPD工艺与其他胶体工艺的主要区别在于电极反应的共存,即发生在电极与电解质溶液界面处的电化学反应。EPD法中的外加电场不仅对带电粒子的电泳,而且对凝固机理和膜质量的控制都起着重要的作用。本文介绍了考虑电极反应的EPD工艺原理,并举例说明了功能膜的形成过程。
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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