Thermodynamic investigation of ZrO2-BaO system

Thermodynamic description of ZrO2-BaO system was developed using the available experimental information. Special attention was paid to the modelling of the perovskite phase BaZrO3 by a temperature-dependent polynomial to fit the experimental thermodynamic properties. The liquid phases, Css (cubic Zr...

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Published inTransactions of Nonferrous Metals Society of China Vol. 17; no. 2; pp. 232 - 237
Main Author 龚伟平 陈腾飞 金展鹏
Format Journal Article
LanguageEnglish
Published State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China 01.04.2007
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ISSN1003-6326
DOI10.1016/S1003-6326(07)60077-6

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Abstract Thermodynamic description of ZrO2-BaO system was developed using the available experimental information. Special attention was paid to the modelling of the perovskite phase BaZrO3 by a temperature-dependent polynomial to fit the experimental thermodynamic properties. The liquid phases, Css (cubic ZrO2 solid solution) and Tss (tetragonal ZrO2 solid solution) were modelled with Redlich-Kister formula. The compounds Ba2ZrO4 and Ba3Zr207 were treated as stoichiometric phases and the BaOss and Mss (halite BaO and monoclinic ZrO2 solid solutions) were treated as pure compounds. Comparisons between the calculated and the measured phase diagram as well as the thermodynamic quantities indicate that the most reliable experimental information is satisfactorily accounted for by the present thermodynamic calculation.
AbstractList Thermodynamic description of ZrO2-BaO system was developed using the available experimental information. Special attention was paid to the modelling of the perovskite phase BaZrO3 by a temperature-dependent polynomial to fit the experimental thermodynamic properties. The liquid phases, Css (cubic ZrO2 solid solution) and Tss (tetragonal ZrO2 solid solution) were modelled with Redlich-Kister formula. The compounds Ba2ZrO4 and Ba3Zr2O7 were treated as stoichiometric phases and the BaOss and Mss (halite BaO and monoclinic ZrO2 solid solutions) were treated as pure compounds. Comparisons between the calculated and the measured phase diagram as well as the thermodynamic quantities indicate that the most reliable experimental information is satisfactorily accounted for by the present thermodynamic calculation.
Thermodynamic description of ZrO2-BaO system was developed using the available experimental information. Special attention was paid to the modelling of the perovskite phase BaZrO3 by a temperature-dependent polynomial to fit the experimental thermodynamic properties. The liquid phases, Css (cubic ZrO2 solid solution) and Tss (tetragonal ZrO2 solid solution) were modelled with Redlich-Kister formula. The compounds Ba2ZrO4 and Ba3Zr207 were treated as stoichiometric phases and the BaOss and Mss (halite BaO and monoclinic ZrO2 solid solutions) were treated as pure compounds. Comparisons between the calculated and the measured phase diagram as well as the thermodynamic quantities indicate that the most reliable experimental information is satisfactorily accounted for by the present thermodynamic calculation.
TG1; Thermodynamic description of ZrO2-BaO system was developed using the available experimental information. Special attention was paid to the modelling of the perovskite phase BaZrO3 by a temperature-dependent polynomial to fit the experimental thermodynamic properties. The liquid phases, CSS (cubic ZrO2 solid solution) and TSS (tetragonal ZrO2 solid solution) were modelled with Redlich-Kister formula. The compounds Ba2ZrO4 and Ba3Zr2O7 were treated as stoichiometric phases and the BaOSS and MSS (halite BaO and monoclinic ZrO2 solid solutions) were treated as pure compounds. Comparisons between the calculated and the measured phase diagram as well as the thermodynamic quantities indicate that the most reliable experimental information is satisfactorily accounted for by the present thermodynamic calculation.
Author 龚伟平 陈腾飞 金展鹏
AuthorAffiliation State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China
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Issue 2
Keywords ZrO2-BaO system
perovskite phase
Redlich-Kister formula
thermodynamic description
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thermodynamic description
ZrO2-BaO system
Redlich-Kister formula
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Snippet Thermodynamic description of ZrO2-BaO system was developed using the available experimental information. Special attention was paid to the modelling of the...
TG1; Thermodynamic description of ZrO2-BaO system was developed using the available experimental information. Special attention was paid to the modelling of...
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SubjectTerms ZrO2-BaO系统
氧化钡
氧化锆
热力学研究
钙钛矿相
Title Thermodynamic investigation of ZrO2-BaO system
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