The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited

The model of organic film growth on a cathode during electrodeposition process proposes the current density-time and film thickness-time relationships and enables the evaluation of the rate contants for the electrochemical reaction of OH ion evolution and for the chemical reaction of organic film de...

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Main Author: VESNA B. MISKOVIC-STANKOVIC
Format: Article
Language:English
Published: Serbian Chemical Society 2002-05-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.shd.org.yu/HtDocs/SHD/Vol67/No5/V67-No5-01.pdf
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spelling doaj-5fc9efd2a41d4e60a449e9e87b32edd12020-11-24T23:05:20ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51392002-05-01675305324The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited VESNA B. MISKOVIC-STANKOVICThe model of organic film growth on a cathode during electrodeposition process proposes the current density-time and film thickness-time relationships and enables the evaluation of the rate contants for the electrochemical reaction of OH ion evolution and for the chemical reaction of organic film deposition. The dependences of film thickness and rate constants on the applied voltage, bath temperature and resin concentration in the electrodeposition bath have also been obtained. The deposition parameters have a great effect on the cathodic electrodeposition process and on the protective properties of the obtained electrodeposited coatings. From the time dependences of the pore resistance, coating capacitance and relative permittivity, obtained from impedance measurements, the effect of applied voltage, bath temperature and resin concentration on the protective properties of electrodeposited coatings has been shown. Using electrochemical impedance spectroscopy, thermogravimetric analysis, gravimetric liquid sorption experiments, differential scanning calorimetry and optical miscroscopy, the corrosion stability of epoxy coatings was investigated. A mechanism for the penetration of electrolyte through an organic coating has been suggested and the shape and dimensions of the conducting macropores have been determined. It was shown that conduction through a coating depends only on the conduction through the macropores, although the quantity of electrolyte in the micropores of the polymer net is about one order of magnitude greater than that inside the conducting macropores.http://www.shd.org.yu/HtDocs/SHD/Vol67/No5/V67-No5-01.pdfelectrodepositoncathodic electrodepositionepoxy coatingscorrosion protectioncorrosion stability
collection DOAJ
language English
format Article
sources DOAJ
author VESNA B. MISKOVIC-STANKOVIC
spellingShingle VESNA B. MISKOVIC-STANKOVIC
The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited
Journal of the Serbian Chemical Society
electrodepositon
cathodic electrodeposition
epoxy coatings
corrosion protection
corrosion stability
author_facet VESNA B. MISKOVIC-STANKOVIC
author_sort VESNA B. MISKOVIC-STANKOVIC
title The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited
title_short The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited
title_full The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited
title_fullStr The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited
title_full_unstemmed The mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited
title_sort mechanism of cathodic electrodeposition of epoxy coatings and the corrosion behaviour of the electrodeposited
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
publishDate 2002-05-01
description The model of organic film growth on a cathode during electrodeposition process proposes the current density-time and film thickness-time relationships and enables the evaluation of the rate contants for the electrochemical reaction of OH ion evolution and for the chemical reaction of organic film deposition. The dependences of film thickness and rate constants on the applied voltage, bath temperature and resin concentration in the electrodeposition bath have also been obtained. The deposition parameters have a great effect on the cathodic electrodeposition process and on the protective properties of the obtained electrodeposited coatings. From the time dependences of the pore resistance, coating capacitance and relative permittivity, obtained from impedance measurements, the effect of applied voltage, bath temperature and resin concentration on the protective properties of electrodeposited coatings has been shown. Using electrochemical impedance spectroscopy, thermogravimetric analysis, gravimetric liquid sorption experiments, differential scanning calorimetry and optical miscroscopy, the corrosion stability of epoxy coatings was investigated. A mechanism for the penetration of electrolyte through an organic coating has been suggested and the shape and dimensions of the conducting macropores have been determined. It was shown that conduction through a coating depends only on the conduction through the macropores, although the quantity of electrolyte in the micropores of the polymer net is about one order of magnitude greater than that inside the conducting macropores.
topic electrodepositon
cathodic electrodeposition
epoxy coatings
corrosion protection
corrosion stability
url http://www.shd.org.yu/HtDocs/SHD/Vol67/No5/V67-No5-01.pdf
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