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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Thermodynamic modeling of the U3O8-x solid solution phase
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Thermodynamic modeling of the U3O8-x solid solution phase

机译:u308-x固溶液相的热力学建模

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摘要

It is important to accurately characterize the equilibrium behavior of U3O8 during UO2 nuclear fuel fabrication as the determination of the oxygen to uranium ratio in UO2 powders and pellets is dependent on U3O8 stoichiometry. Prior thermodynamic modeling efforts have treated U3O8 as stoichiometric; however, it is experimentally known that the phase exhibits hypostoichiometric behavior at temperatures >850 K. The goal of this work was to model U3O8 as a solid solution using the compound energy formalism and optimize the model to experimental data according to the CALPHAD methodology. Results of the U3O8-x model assessment were visualized by recalculating the previously assessed U-O binary phase diagram replacing a stoichiometric representation of U3O8 with a U3O8-x solid solution model. Moreover, a recommendation is made to revise the U3O8 to U conversion factor used in the ASTM C 1453 standard based on the literature and updated thermodynamic representation for U3O8-x presented in this work. (C) 2019 Elsevier B.V. All rights reserved.
机译:重要的是在UO2核燃料制造期间准确地表征U3O8的平衡行为,因为UO2粉末和颗粒中的氧气与铀比的测定取决于U3O8化学计量。现有的热力学建模努力使U3O8视为化学计量;然而,实验众所周知,该相在温度> 850k下表现出次要的次要行为。该作品的目的是使用复合能量形式主义将U3O8塑造为固溶体,并根据Calphad方法优化模型到实验数据。通过重新计算先前评估的U3O8固体溶液模型,通过重新计算先前评估的U3O8的化学计量表示来可视化U3O8-X模型评估的结果。此外,基于在本工作中呈现的U3O8-X的文献和更新的热力学表示,提出了一种推荐,将U3O8修改为ASTM C 1453标准中使用的U3O8标准的转换因子。 (c)2019 Elsevier B.v.保留所有权利。

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