Plasma thermal spray of ceramic oxide coating on carbon steel with enhanced wear and corrosion resistance for oil and gas applications

In this work, carbon steel surface was coated with Al2O3–40wt% TiO2 composite using thermal spraying method. The tribological properties of the plasma-sprayed Al2O3–40wt% TiO2 coating were investigated with a tribometer (pin-on-disc) to evaluate and compare the wear properties of coated and uncoated...

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Veröffentlicht in:Ceramics international 2014-11, Vol.40 (9), p.14267-14277
Hauptverfasser: Zavareh, Mitra Akhtari, Sarhan, Ahmed Aly Diaa Mohammed, Razak, Bushroa Binti Abd, Basirun, Wan Jeffrey
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container_end_page 14277
container_issue 9
container_start_page 14267
container_title Ceramics international
container_volume 40
creator Zavareh, Mitra Akhtari
Sarhan, Ahmed Aly Diaa Mohammed
Razak, Bushroa Binti Abd
Basirun, Wan Jeffrey
description In this work, carbon steel surface was coated with Al2O3–40wt% TiO2 composite using thermal spraying method. The tribological properties of the plasma-sprayed Al2O3–40wt% TiO2 coating were investigated with a tribometer (pin-on-disc) to evaluate and compare the wear properties of coated and uncoated samples under different loads. Additionally, cumulative weight analysis was done to compare wear loss. The results indicate significant anti-wear improvement with an increase in TiO2 from 13wt% to 40wt%. The corrosion on coated and uncoated samples was analyzed using AC and DC methods, namely open circuit potential from potentio-dynamic polarization and electrochemical impedance spectroscopy in 3% NaCl solution for 20 days.
doi_str_mv 10.1016/j.ceramint.2014.06.017
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subjects Al2O3-40 wt% TiO2
Carbon steels
Ceramics
Coating
Corrosion
Corrosion resistance
Natural gas
Plasma deposition
Protective coatings
Titanium dioxide
Wear
Wear resistance
title Plasma thermal spray of ceramic oxide coating on carbon steel with enhanced wear and corrosion resistance for oil and gas applications
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