Optimization of pre-oxidation time for corrosion resistance of cobalt based coating alloy in mixed sulphates
Anti-Corrosion Methods and Materials
ISSN: 0003-5599
Article publication date: 3 February 2021
Issue publication date: 16 February 2021
Abstract
Purpose
This study aims to optimise the effect of pre-oxidation on hot corrosion behaviour of Tribaloy T-900 at 900 °C in mixed Na2SO4 and K2SO4.
Design/methodology/approach
Prior to hot corrosion experiment, pre-oxidation treatments were carried in ambient air at 900 °C for 1, 5 and 10 h, respectively. The hot corrosion experiments were performed in a box type furnace at 900 °C. Both surfaces of specimens were brushed with saturated salt solution of 75 wt.% Na2SO4 + 25 wt.% K2SO4. After brushing, the salt-coated specimens were placed in electric stove to ensure drying of salt. After drying, presence of 3 mg/cm2 salt on specimen’s surface was ensured through weighting.
Findings
The 1-h pre-oxidation treatment prior to hot corrosion showed superior hot corrosion resistance against molten salt attack. An optimum pre-oxidation time of 1 h helped timely formation of protective Cr2O3 layer and inhibited the formation of less stable and porous surface oxides of Ni and Mo during hot corrosion.
Originality/value
Pre-oxidation effect on hot corrosion behaviour of refractory metal (such as Mo in investigated alloy) containing alloy has never been reported previously. Refractory metals oxide (e.g. MoO3) could transform the corrosion phenomena to catastrophic failure through acidic fluxing.
Keywords
Acknowledgements
This work was supported by Tsinghua University Initiative Scientific Research Program and National Magnetic Confinement Fusion Energy Research Project of China (grant number- 2015GB118001).
Citation
Rehman, A., Bidabadi, M.H.S., Yang, L., Yu, Z., Hao, C., Zhang, C. and Yang, Z. (2021), "Optimization of pre-oxidation time for corrosion resistance of cobalt based coating alloy in mixed sulphates", Anti-Corrosion Methods and Materials, Vol. 68 No. 1, pp. 29-35. https://doi.org/10.1108/ACMM-03-2020-2270
Publisher
:Emerald Publishing Limited
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