Investigation of thermally sprayed NiCrAlY/TiO2and NiCrAlY/Cr2O3/YSZ cermet composite coatings on titanium alloys

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Date

2022

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Institute of Physics

Abstract

The present work investigates the hot corrosion behavior of thermally sprayed 65 pct NiCrAlY + 35 pct TiO2 and 65 pct NiCrAlY + 30 pct Cr2O3 + 5 pct YSZ coatings on titanium 15 alloys. The coatings on the titanium 15 alloy substrates exhibit a near-uniform, dense, and adherent microstructure with a porosity of 2.7 to 2.9%. Thermogravimetric studies are made to examine the hot corrosion performance of coatings in a molten salt environment of Na2SO4 + 60%V2O5 at the temperature of 700 °C for 50 cycles. One cycle is carried out by heating for a period of one hour and cooling the sample at ambient conditions. The corrosion products are analyzed based on scanning electron microscopy, energy dispersive analysis, and X-ray diffraction techniques to study the morphology, phase composition, and abundance of the high-temperature corrosion constituents. The bare titanium-15 alloy, 65 pct NiCrAlY + 35 pct TiO2 coating and 65 pct NiCrAlY + 35 pct Cr2O3 + 5 pct YSZ coating produced a weight gain of 307.92 mg cm-2, 42.16 mg cm-2 and 44.02 mg cm-2 respectively after the period of 50 cycles. The effective resistance of the coatings is due to the formation of Ni3V2O8, NiCr2O4, Cr2O3 & AlV2O4 phases. © 2022 IOP Publishing Ltd.

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Keywords

Composite coatings, Corrosion resistant coatings, Corrosive effects, High temperature corrosion, Morphology, Plasma spraying, Scanning electron microscopy, Sodium sulfate, Sprayed coatings, Thermal barrier coatings, Titanium alloys, Vanadium pentoxide, Yttria stabilized zirconia, Alloy substrates, Cermet composite coating, Corrosion behaviour, Hot corrosion, Ni-based coatings, Plasma spray coating, Thermogravimetric studies, Titania, Titanium (alloys), YSZ coatings, Titanium dioxide

Citation

Engineering Research Express, 2022, 4, 2, pp. -

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