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Energetics of Reactions between Ceramic Coating Materials and their Binary Oxide Components with Silicate Melts This paper summarizes our previous and current studies of using high-temperature calorimetry to investigate the energetics of reactions of ceramic coating materials (e.g., yttrium disilicate and 7-wt% yttria-stabilized zirconia) and their binary oxide components with silicate melts in the CaO–MgO–Al2O3–SiO2 (CMAS) system. Such interactions are found to become stronger (more exothermic) with increasing difference in acid–base character between these materials and the melt. Our results suggest that the reactivity between the coating materials and the melt increases with decreasing thermodynamic stability (less exothermic enthalpy of formation from oxide components) of the coating material. They also suggest that ceramic coating materials made from binary oxides that have less exothermic enthalpies of solution and mixing are less susceptible to CMAS melt corrosion when in contact with an acidic, relatively polymerized, melt rich in SiO2. Thus, we propose that new coating material formulation and CMAS melt corrosion mitigation strategies should be optimized based on the energetic contributions of their binary oxide components.
Document ID
20220011456
Acquisition Source
Glenn Research Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Gustavo Costa
(Glenn Research Center Cleveland, Ohio, United States)
Bryan J. Harder
(Glenn Research Center Cleveland, Ohio, United States)
Narottam P. Bansal
(Glenn Research Center Cleveland, Ohio, United States)
Jamesa L. Stokes
(Glenn Research Center Cleveland, Ohio, United States)
Kristina Lilova
(Arizona State University Tempe, Arizona, United States)
Tamilarasan Subranami
(Arizona State University Tempe, Arizona, United States)
Sergey V. Ushakov
(Arizona State University Tempe, Arizona, United States)
Kevin J. Meisner
(Arizona State University Tempe, Arizona, United States)
Alexandra Navrotsky
(Arizona State University Tempe, Arizona, United States)
Date Acquired
July 29, 2022
Publication Date
August 20, 2022
Publication Information
Publication: Journal of the American Ceramic Society (JACerS)
Publisher: Wiley
Volume: 105
Issue: 12
Issue Publication Date: December 1, 2022
ISSN: 0002-7820
e-ISSN: 1551-2916
Subject Category
Composite Materials
Chemistry And Materials (General)
Funding Number(s)
WBS: 109492.02.03.05.02.01
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
CMAS
corrosion
melt
oxides
silicate
thermochemistry
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