Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance
S.76-82 Six organic coating systems are investigated according to their performance under Arctic offshore conditions. Four performance groups are considered: corrosion protection performance, performance under mechanical loads, surface status and icing performance. The investigations involve the fol...
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ftfrauneprints:oai:publica.fraunhofer.de:publica/246958 2024-05-19T07:35:38+00:00 Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance Momber, Andreas W. Irmer, Michael Glück, Nikolai 2016 https://publica.fraunhofer.de/handle/publica/246958 https://doi.org/10.1016/j.coldregions.2016.03.013 en eng Cold regions science and technology doi:10.1016/j.coldregions.2016.03.013 https://publica.fraunhofer.de/handle/publica/246958 Korrosionsschutz Vereisen Anstrich Beschichtung organische Beschichtung 550 journal article 2016 ftfrauneprints https://doi.org/10.1016/j.coldregions.2016.03.013 2024-04-24T00:13:08Z S.76-82 Six organic coating systems are investigated according to their performance under Arctic offshore conditions. Four performance groups are considered: corrosion protection performance, performance under mechanical loads, surface status and icing performance. The investigations involve the following tests: accelerated corrosion protection/ageing tests, tests for coating adhesion, hoarfrost accretion measurements, impact resistance tests, abrasion tests, and wettability tests. The test conditions are adapted to Arctic offshore conditions, which mainly cover low temperatures down to − 60 °C. A testing facility for hoarfrost performance tests is developed. The coating systems are organic coating systems which differ in generic coating material, hardener, number of layers, dry film thickness and application method. Part 1 describes the testing programme and discusses the results of the corrosion protection performance tests. Part 2 discusses the results of the surface topography measurements, wettability assessment, hoarfrost formation and mechanical testing. A procedure for the ranking of the coating performance is developed. The best performing system in the scope of evaluation is a three-layer system with high thickness (1400 mm), consisting of two glass-flake reinforced epoxy coats and a polyurethane topcoat. 127 Article in Journal/Newspaper Arctic Publikationsdatenbank der Fraunhofer-Gesellschaft Cold Regions Science and Technology 127 76 82 |
institution |
Open Polar |
collection |
Publikationsdatenbank der Fraunhofer-Gesellschaft |
op_collection_id |
ftfrauneprints |
language |
English |
topic |
Korrosionsschutz Vereisen Anstrich Beschichtung organische Beschichtung 550 |
spellingShingle |
Korrosionsschutz Vereisen Anstrich Beschichtung organische Beschichtung 550 Momber, Andreas W. Irmer, Michael Glück, Nikolai Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance |
topic_facet |
Korrosionsschutz Vereisen Anstrich Beschichtung organische Beschichtung 550 |
description |
S.76-82 Six organic coating systems are investigated according to their performance under Arctic offshore conditions. Four performance groups are considered: corrosion protection performance, performance under mechanical loads, surface status and icing performance. The investigations involve the following tests: accelerated corrosion protection/ageing tests, tests for coating adhesion, hoarfrost accretion measurements, impact resistance tests, abrasion tests, and wettability tests. The test conditions are adapted to Arctic offshore conditions, which mainly cover low temperatures down to − 60 °C. A testing facility for hoarfrost performance tests is developed. The coating systems are organic coating systems which differ in generic coating material, hardener, number of layers, dry film thickness and application method. Part 1 describes the testing programme and discusses the results of the corrosion protection performance tests. Part 2 discusses the results of the surface topography measurements, wettability assessment, hoarfrost formation and mechanical testing. A procedure for the ranking of the coating performance is developed. The best performing system in the scope of evaluation is a three-layer system with high thickness (1400 mm), consisting of two glass-flake reinforced epoxy coats and a polyurethane topcoat. 127 |
format |
Article in Journal/Newspaper |
author |
Momber, Andreas W. Irmer, Michael Glück, Nikolai |
author_facet |
Momber, Andreas W. Irmer, Michael Glück, Nikolai |
author_sort |
Momber, Andreas W. |
title |
Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance |
title_short |
Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance |
title_full |
Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance |
title_fullStr |
Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance |
title_full_unstemmed |
Performance characteristics of protective coatings under low-temperature offshore conditions. Part 1: Experimental set-up and corrosion protection performance |
title_sort |
performance characteristics of protective coatings under low-temperature offshore conditions. part 1: experimental set-up and corrosion protection performance |
publishDate |
2016 |
url |
https://publica.fraunhofer.de/handle/publica/246958 https://doi.org/10.1016/j.coldregions.2016.03.013 |
genre |
Arctic |
genre_facet |
Arctic |
op_relation |
Cold regions science and technology doi:10.1016/j.coldregions.2016.03.013 https://publica.fraunhofer.de/handle/publica/246958 |
op_doi |
https://doi.org/10.1016/j.coldregions.2016.03.013 |
container_title |
Cold Regions Science and Technology |
container_volume |
127 |
container_start_page |
76 |
op_container_end_page |
82 |
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1799474436904058880 |