Original title: Combined coatings against mechanical wear and corrosion low carbon steel
Authors: Brožek, Vlastimil ; Pokorný, P. ; Kolísko, J. ; Vokáč, M. ; Mastný, L. ; Stoulil, J.
Document type: Papers
Conference/Event: METAL 2017: International Conference on Metallurgy and Materials /26./, Brno (CZ), 20170524
Year: 2017
Language: eng
Abstract: In this study, special ceramic coatings were prepared on low carbon steel (1.0060 - EN 10027-2) via the plasma spraying technique using a WSP®-H plasma generator with output of up to 40 kg/h of aluminum oxide. Corundum coatings were deposited directly on the surface of steel plungers equipped with an anti-corrosion interlayer of zinc phosphate. Coating adhesion properties were tested using pin-off tests (modified ISO 4624) and reached a maximum value of 26 MPa. Corrosion resistance was evaluated by measurements of impedance spectra in the 100 kHz - 10 mHz range in a water solution of sodium sulfate. The capacity of electric double-layer varied depending on the porosity and thickness of the coating. Low-porosity coatings of >1.5 mm thickness had RCT 1.29·105 Ω·m2. The abrasive resistance of coatings was measured by rotary/machining test with SiC cutting knives, using a downforce of 50 kg·cm-2. Abrasion losses decreased with the quality of finish - starting at 0.00266 g cm-2 min-1 down to virtually zero losses after polishing the surface below Ra = 0.55 micro m.
Keywords: Abrasion; Ceramic coatings; Corrosion resistance; Plasma spraying; Steel phosphating
Host item entry: METAL 2017 - 26th International Conference on Metallurgy and Materials, Conference Proceedings, ISBN 978-80-87294-79-6

Institution: Institute of Plasma Physics AS ČR (web)
Document availability information: Fulltext is available at the institute of the Academy of Sciences.
Original record: http://hdl.handle.net/11104/0284209

Permalink: http://www.nusl.cz/ntk/nusl-375637


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Research > Institutes ASCR > Institute of Plasma Physics
Conference materials > Papers
 Record created 2018-06-19, last modified 2021-11-24


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