To read this content please select one of the options below:

Thermodynamic parameters of electrodeposition of Zn‐Co‐TiO2 composite coatings

Z. Abdel Hamid (Central Metallurgical R & D Institute, Helwan, Cairo, Egypt)

Anti-Corrosion Methods and Materials

ISSN: 0003-5599

Article publication date: 1 August 2001

592

Abstract

Zinc‐cobalt alloys have been electrodeposited from a sulphate bath. The effect of process variables, including temperature, time, concentration of cobalt sulfate and current density on the Zn‐Co deposition was investigated from kinetic and mechanistic viewpoints. Activation energies, enthalpies and entropies were determined according to Arrhenius and absolute rate theories. The codeposition mechanism of TiO2 with cobalt‐zinc in the presence of benzyl triethanol ammonium exthoxylate (BTAE) has been studied. The optimum concentration of the additive was reported. The mechanism of incorporation of TiO2 was suggested and confirmed in view of calculated free energy of adsorption of TiO2. Corrosion resistance of Zn‐Co‐TiO2 alloy was determined by a salt spray test under most of the plating conditions studied.

Keywords

Citation

Abdel Hamid, Z. (2001), "Thermodynamic parameters of electrodeposition of Zn‐Co‐TiO2 composite coatings", Anti-Corrosion Methods and Materials, Vol. 48 No. 4, pp. 235-241. https://doi.org/10.1108/EUM0000000005631

Publisher

:

MCB UP Ltd

Copyright © 2001, MCB UP Limited

Related articles