In the present study, we repeatedly used the surface-applied paste electrolyte cell to record the electrochemical impedance spectroscopy (EIS) spectra of four coating systems with different barrier properties exposed to different environments. The absence of a liquid electrolyte allows direct recording of the electrolyte-unaltered coating response to environmental stressors. Exposures included humidity between 23% and 95%, temperatures between 10°C and 50°C, 720 h of ISO 9227 neutral salt spray (NSS), 1 y in mild continental urban climate, and for comparison, 3 y of ISO 16773 3.5% NaCl immersion. The coatings showed significantly different temperature susceptibility of impedance revealing two temperature ranges with activation energies corresponding to ionic conductivity below 20°C and conductivity influenced by polymer chain movements above 30°C. Impedances measured for intact coatings or impedances calculated from the assumed range of dielectric constant and coating thicknesses can be used as references. The EIS outcome of the laboratory tests and the time- and temperature-resolved EIS responses under atmospheric exposure were compared with the reference impedances of the coatings. Mild continental climate exposure at temperatures <35°C and immersion at 23±2°C yielded better barrier performance for the two solvent-based coating systems compared to the two waterborne systems of comparable thickness and number of layers. The NSS test that proceeds at 35°C yielded better performance of both solvent-based coatings over the waterborne coatings, regardless of the thickness. EIS quantification of barrier performance, which excludes the influence of the liquid electrolyte, has provided insight into the temperature effect on the barrier behavior of the coatings under nonaccelerated and accelerated exposures and the final coating rating.
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1 September 2023
Research Article|
April 12 2023
Comparative Electrochemical Impedance Spectroscopy Quantification of Coating Weathering, Long-Term Immersion, and Salt Spray Test Outcomes Available to Purchase
Sanja Martinez;
Sanja Martinez
*Faculty of Chemical Engineering and Technology, Marulićev trg 19, Zagreb, Croatia, 10000.
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Ivana Šoić
;
Ivana Šoić
‡
*Faculty of Chemical Engineering and Technology, Marulićev trg 19, Zagreb, Croatia, 10000.
‡Corresponding author. E-mail: [email protected].
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Valentino Golub
;
Valentino Golub
*Faculty of Chemical Engineering and Technology, Marulićev trg 19, Zagreb, Croatia, 10000.
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Bojan Hudec
Bojan Hudec
*Faculty of Chemical Engineering and Technology, Marulićev trg 19, Zagreb, Croatia, 10000.
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‡Corresponding author. E-mail: [email protected].
Online ISSN: 1938-159X
Print ISSN: 0010-9312
© 2023, AMPP
2023
CORROSION (2023) 79 (9): 1029–1039.
Citation
Sanja Martinez, Ivana Šoić, Valentino Golub, Bojan Hudec; Comparative Electrochemical Impedance Spectroscopy Quantification of Coating Weathering, Long-Term Immersion, and Salt Spray Test Outcomes. CORROSION 1 September 2023; 79 (9): 1029–1039. https://doi.org/10.5006/4267
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