磁场对电沉积涂装技术的影响

张雅婷[1];张仲晦[1];王茹[1];姚昕乐[1];周春宇[1];孙初锋[1]

现代涂料与涂装 ›› 2020, Vol. 23 ›› Issue (9) : 30-32.

PDF(2599 KB)
PDF(2599 KB)
现代涂料与涂装 ›› 2020, Vol. 23 ›› Issue (9) : 30-32.

磁场对电沉积涂装技术的影响

  • 张雅婷[1];张仲晦[1];王茹[1];姚昕乐[1];周春宇[1];孙初锋[1]
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The Influences of Magnetic Field on Electrodeposition Painting

  • ZHANG Ya-ting[1];ZHANG Zhong-hui[1];WANG Ru[1];YAO Xin-le[1];ZHOU Chun—yu[1];SUN Chu-feng[1]
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摘要

电沉积涂装是水性胶分散体在直流电场作用下通过电解、电泳、电沉积等作用进行涂装,电沉积在涂装方面有巨大发展潜力,同时也是电镀、电铸的基础,电沉积的发展解决了传统涂装体系的一系列问题简述了磁场对电沉积的影响情况和磁场电沉积的研究进展,探讨了磁场方向对电沉积的影响,以及磁场对镀液性能及镀层表面形貌、合金化学组成、电流效率和微观结构等的影响。

Abstract

Electrodeposition coating is applied by electrolysis, electrophoresis, electrodeposition, etc. under the action of a direct current electric field by an aqueous colloidal dispersion. Electrodeposition has great potential for painting and is also the basis of electroplating and electroforming. The development of electrodeposition solves a series of problems in traditional painting systems, and the influences of magnetic field on electrodeposition and magnetic field electrodeposition are briefly described. The research progress, the influences of magnetic field direction on electrodeposition, and the influences of magnetic field on bathing performance and surface morphology, alloy chemical composition, current efficiency and microstructure are discussed.

关键词

磁场;电沉积;MHD效应;复合镀层;涂装

Key words

magnetic field;electrodeposition;MHD effect;composite coating;painting

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导出引用
张雅婷[1];张仲晦[1];王茹[1];姚昕乐[1];周春宇[1];孙初锋[1]. 磁场对电沉积涂装技术的影响[J]. 现代涂料与涂装. 2020, 23(9): 30-32
ZHANG Ya-ting[1];ZHANG Zhong-hui[1];WANG Ru[1];YAO Xin-le[1];ZHOU Chun—yu[1];SUN Chu-feng[1]. The Influences of Magnetic Field on Electrodeposition Painting[J]. Modern Paint & Finishing. 2020, 23(9): 30-32
中图分类号: TQ639   

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