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Characterization of Encapsulated Corrosion Inhibitors for Environmentally Friendly Smart Coatings

Authors :
Pearman, B. P
Calle, L. M
Zhang, X
Li, W
Buhrow, J. W
Johnsey, M. N
Montgomery, E. L
Fitzpatrick, L
Surma, J. M
Publication Year :
2015
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2015.

Abstract

The NASA Kennedy Space Center's Corrosion Technology Lab at the Kennedy Space Center in Florida, U.S.A. has been developing multifunctional smart coatings based on the microencapsulation of environmentally friendly corrosion indicators, inhibitors and self-healing agents. This allows the incorporation of autonomous corrosion control functionalities, such as corrosion detection and inhibition as well as the self-healing of mechanical damage, into coatings. This paper presents technical details on the characterization of inhibitor-containing particles and their corrosion inhibitive effects using electrochemical and mass loss methods. Three organic environmentally friendly corrosion inhibitors were encapsulated in organic microparticles that are compatible with desired coatings. The release of the inhibitors from the microparticles in basic solution was studied. Fast release, for immediate corrosion protection, as well as long-term release for continued protection, was observed. The inhibition efficacy of the inhibitors, incorporated directly and in microparticles, on carbon steel was evaluated. Polarization curves and mass loss measurements showed that, in the case of 2MBT, its corrosion inhibition effectiveness was greater when it was delivered from microparticles.

Details

Language :
English
Database :
NASA Technical Reports
Notes :
WBS 329527.01.06.0974.14, , NNK11EA08C
Publication Type :
Report
Accession number :
edsnas.20150018431
Document Type :
Report