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Meeting Materials Science & Technology 2020
Symposium Thermodynamics of Materials in Extreme Environments
Presentation Title Thermodynamic Modelling of Vacancies in Zirconium Carbide
Author(s) Theresa Davey, Ying Chen
On-Site Speaker (Planned) Theresa Davey
Abstract Scope Zirconium carbide is of interest in nuclear and aerospace industries due to its stability and strength at extremely high temperatures. Its properties are strongly affected by significant carbon vacancies that give a wide range of stability. In conventional CALPHAD thermodynamic modelling, these vacancies are assumed to be randomly distributed and properties relating to the vacancies are not directly considered. However recent experimental and first-principles insights suggest the presence of vacancy-ordering and different regimes within the phase diagram that are dominated by either structural or thermal vacancies. Using first-principles calculations, the character of the vacancies is elucidated and mapped. Calculations of defect-related properties are used to inform development of Gibbs energy models that may be used where the thermodynamic properties are highly dependent on point defects and their ordering. Incorporating such information directly into the thermodynamic database provides a physically consistent description which should allow further predictive ability.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Ab-initio Studies of Point Defects in Alumina under Electrochemical Conditions
Density Functional Theory Modeling on the Positive Effect of H2O in Hydrogen Oxidation Reaction on Perovskite Anode for Solid-oxide Fuel Cells
Effect of Physically Determined Coordination-numbers for Modeling Molten Salt Fuels Using the Modified Quasi-chemical Model (MQM)
Ellingham Diagram to Assess Synthesis Conditions and Chemical Stability of Ceramic Membranes under Operational Conditions
Exploring Extreme Environments via In-situ Electron Microscopy
Helium Irradiation of Gd2Zr2O7 Defect-fluorite Ceramics: Interfacial Phenomena and Radiation Resistance
Improved CMAS Resistance of Environmental Barrier Coatings via Tailoring Phase and Composition of Mixed Rare Earth Silicates
Molecular Modeling of Surface Exchange Mechanisms in Solid Oxide Fuel Cell Cathodes
Nanomaterials from Geopolymer, a Low-temperature Ceramics
Pressure-induced Anomalous Phase Transition Behavior in Layered Tellurene
Stabilities and Ultrafast Dynamics of Sub-nanometer Metal Oxide Clusters
The LiF–ZrF4 System Revisited - An Updated Thermodynamic Description Using New Information Data
Thermochemical Modeling of Molten Salt Systems for Reactors and Simulations with the Molten Salt Thermodynamic Database
Thermodynamic Modelling of Vacancies in Zirconium Carbide
Thermodynamics and Elastic Properties of Cerium Doped Yttrium Aluminum Garnets

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