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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Numerical modeling of oxygen diffusion in the wall thickness of Low-Tin Zircaloy-4 fuel cladding tube during high temperature (1100-1250 degrees C) steam oxDEation
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Numerical modeling of oxygen diffusion in the wall thickness of Low-Tin Zircaloy-4 fuel cladding tube during high temperature (1100-1250 degrees C) steam oxDEation

机译:低锡Zircaloy-4燃料包壳管在高温(1100-1250摄氏度)蒸汽氧化过程中氧气扩散的壁厚数值模拟

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摘要

A new numerical tool has been developed by coupling the diffusion code "EKINOX" (Estimation Kinetics OxDEation) and the thermodynamic database "ZIRCOBASE" using TQ(ThermoCalc program interface). The aim of this tool is to calculate the oxygen diffusion during oxDEation of Zr based alloys. The simulation results of the oxDEe growth kinetics and the induced oxygen diffusion profiles in the [1100-1250 degrees C] temperature range, at different times, are presented and compared to previous experimental results. An estimation of the diffusion coefficient in the alpha phase is deduced from this comparison. The results are discussed in comparison to previous models based on an analytical treatment and the influence of the choice of the thermodynamic data set on the final oxygen diffusion profile is explored. Finally, it is shown that the present modeling is able to predict quite accurately the "critical" oxDEation time corresponding to the overall ductile-to-brittle transition of the high temperature (HT) oxDEized clad.
机译:通过使用TQ(ThermoCalc程序界面)将扩散代码“ EKINOX”(估算动力学氧化)与热力学数据库“ ZIRCOBASE”耦合,开发了一种新的数值工具。该工具的目的是计算Zr基合金的oxDEation期间的氧扩散。给出了在[1100-1250摄氏度]温度范围内在不同时间的oxDEe生长动力学和诱导的氧扩散曲线的仿真结果,并将其与以前的实验结果进行了比较。从该比较得出α相中扩散系数的估计。将结果与以前的模型进行了分析比较,讨论了这些结果,并探讨了热力学数据集选择对最终氧扩散曲线的影响。最后,表明本发明模型能够相当准确地预测“临界” oxDEation时间,该时间对应于高温(HT)oxDE化的覆层的整体延性-脆性转变。

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