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Model for evolution of grain size in the rim region of high burnup UO2 fuel

机译:高燃耗UO2燃料边缘区域晶粒尺寸演化模型

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摘要

The restructuring process of the high burnup structure (HBS) formation in UO2 fuel results in sub-micron size grains that accelerate the fission gas swelling, which will raise some concern over the safety of extended the nuclear fuel operation life in the reactor. A mechanistic and engineering model for evolution of grain size in the rim region of high burnup UO2 fuel based on the experimental observations of the HBS in the literature is presented. The model takes into account dislocations evolution under irradiation and the grain subdivision occur successively at increasing local burnup. It is assumed that the original driving force for subdivision of grain in the HBS of UO2 fuel is the production and accumulation of dislocation loops during irradiation. The dislocation loops can also be annealed through thermal diffusion when the temperature is high enough. The capability of this model is validated by the comparison with the experimental data of temperature threshold of subdivision, dislocation density and sub-grain size as a function of local burnup. It is shown that the calculated results of the dislocation density and subdivided grain size as a function of local burnup are in good agreement with the experimental results. (C) 2016 Elsevier B.V. All rights reserved.
机译:UO2燃料中高燃点结构(HBS)形成的重组过程导致亚微米级晶粒加速裂变气体膨胀,这将引起人们对延长反应堆中核燃料运行寿命安全性的担忧。基于文献中HBS的实验观测结果,提出了一种高燃耗UO2燃料边缘区晶粒尺寸演化的力学和工程模型。该模型考虑了位错在辐照下的演化,并且晶粒细分在局部燃耗增加时相继发生。假定将UO2燃料的HBS中的颗粒细分的原始驱动力是辐照过程中位错环的产生和积累。当温度足够高时,位错环也可以通过热扩散进行退火。通过与细分温度阈值,位错密度和亚晶粒尺寸作为局部燃耗函数的实验数据进行比较,验证了该模型的能力。结果表明,位错密度和细化晶粒尺寸随局部燃耗的计算结果与实验结果吻合良好。 (C)2016 Elsevier B.V.保留所有权利。

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