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Interplay of the phase and the chemical composition of the powder feedstock on the properties of porous 8YSZ thermal barrier coatings
Authors:Atin Sharma  Gregoire Witz  Philip C Howell  Neil Hitchman
Affiliation:1. Siemens Energy, Inc., 5101 Westinghouse Blvd., Charlotte, NC, 28273, United States;2. Siemens Energy AG, Freilagerstrasse 40, 8047, Zürich, Switzerland;3. Siemens AG Corporate Technology, Otto-Hahn-Ring 6, 81739, Muenchen, Germany;4. Siemens Energy, Inc., 5101 Westinghouse Blvd., Charlotte, NC, 28273, United States
Abstract:Some chemical impurities enhance sintering kinetics of ceramic Thermal Barrier Coatings (TBCs) which can cause their premature failure during operation in gas turbine engine by causing reduction in coating’s strain compliance as well as faster bond-coat oxidation due to increased thermal conductivity. Certain chemical impurities are also believed to suppress resistance to tetragonal to monoclinic phase transformation in 8YSZ, which can also be an important factor regarding TBC’s performance. Most of the impurities and some of the monoclinic phase present in the powder feedstocks can survive into the as-sprayed coating. Therefore, there is a general trend towards OEMs requiring the lowest amounts of chemical impurities and the lowest amounts of monoclinic phase in the powder feedstocks. This paper presents a comprehensive investigation aimed at understanding the role and the relative importance of the chemical and phase purities of the powder feedstock for the properties and performance of thick 8YSZ TBCs.
Keywords:Yttria stabilized zirconia ceramic  Chemical composition  Phase transformation  Powder feedstock  Thermal barrier coatings
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