N. Imaz, E. Garcı´ a-Lecina
Electrodeposited chromium coatings are valued for their mechanical and tribological properties, making them suitable for various industrial applications. However, conventional methods face challenges such as limited corrosion resistance and low current efficiency during electrodeposition. This study aims to improve chromium coating characteristics by implementing reverse pulse plating alongside chemometric techniques. A comprehensive experimental design was developed, utilizing multivariate analysis to investigate the relationship between various pulse plating parameters and the resultant structural and physical characteristics of the coatings. The findings revealed that reverse pulse electrodeposition could yield crack-free chromium coatings, maintaining hardness levels comparable to those produced by direct current electrodeposition, but with notably improved corrosion resistance. This approach not only enhances the performance of chromium coatings but also simplifies the process of selecting optimal plating parameters, ultimately contributing to more effective applications in industries where chromium plating is prevalent.
@article{d497bf2d-88b5-4b78-9d04-8493bef706b6,
title={Chemometrics applied to functional chromium electroplating by pulse plating techniques},
author={N. Imaz and E. Garcı´ a-Lecina},
year={2012},
language={en}
}TY - JOUR TI - Chemometrics applied to functional chromium electroplating by pulse plating techniques AU - N. Imaz AU - E. Garcı´ a-Lecina PY - 2012 LA - en ER -
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