Publication

Axial plasma spraying of aqueous solution precursors: A facile approach for columnar thermal barrier coatings

Jan 8, 2025 · 5 authors · 15 topics

Abstract

Thermal barrier coatings (TBC) are an essential part of modern gas turbines for aviation and power generation. As such, there is an incessant demand for improved TBC performance and longevity. Of the possible coating microstructures, the columnar structure first produced by electron beam physical vapour deposition was found to be most durable. The subsequently developed suspension plasma spray coatings are seen as an alternative method for producing columnar TBCs but typically utilise flammable solvents to achieve such structures. Aqueous solution precursors have also been used as a feedstock to deposit yttria stabilised zirconia (YSZ) TBCs; however, columnar structures have proven elusive, with solution precursor plasma spray (SPPS) deposition conditions and throughputs involving radial feed spray torches also being industrially unattractive. This study illustrates the first columnar coatings of single-layer yttria stabilised zirconia from an aqueous solution precursor using an axial feed capable plasma torch. Coatings have been shown to be columnar structured over a robust operating window, fully tetragonal in phase constitution and capable of being deposited at rates that can be commercially interesting. These initial results lay a great foundation for further TBC development utilizing an aqueous, powder-free, feedstock.

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Authors

Thomas HervyNicholas A. CurryStefan BjörklundFrantišek LukáčShrikant Vishwanath Joshi

Topics

High-Temperature Coating BehaviorsCatalytic Processes in Materials ScienceFlame retardant materials and propertiesAvailable online 8 January 2025 0955-2219/© 2025 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).Thomas Hervy a,b, Nicholas Curry c, Stefan Bjorklund ¨ a, Frantisek Lukac d, Shrikant Joshi a,* a Department of Engineering Science, University West, Sweden b Department of Mechanical Engineering, University of Limoges, France c Thermal Spray Innovations, Salzburg, Austria d Institute of Plasma Physics of the Czech Academy of Sciences, Prague, Czech RepublicARTICLE INFOKeywords:Thermal barrier coatingSolution precursor plasma sprayingAxial injectionColumnar microstructureXRDDeposition rateThermal cyclingYSZ

About

PublishedJan 8, 2025
TypeArticle
Citations22
References33

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