首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Model of nuclear fuel pellets densification under irradiation and isothermal conditions: Application to UO2 fuels
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Model of nuclear fuel pellets densification under irradiation and isothermal conditions: Application to UO2 fuels

机译:辐照和等温条件下核燃料颗粒致密化模型:UO2燃料的应用

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The dimensional changes of a nuclear fuel in operation are strongly determined by two opposite effects. One of them is due to contraction of the as-fabricated pores, giving place to densification which is evident during the first stages of irradiation. This effect is counteracted by the swelling phenomenon provoked by the fission products that progressively accumulate in the fuel material. A model to evaluate the changes in fuel pellets porosity due to radiation and thermal effects taking into account the point defects flow to and from the pores is presented. A simplification of the model to assess the progress of porosity in isothermal re-sintering tests is also given. Simulations are compared with experimental data measured on UO2 fuel pellets with a variety of microstructures at different temperatures and radiation conditions, attaining a good agreement. (C) 2018 Elsevier B.V. All rights reserved.
机译:核燃料在操作中的尺寸变化强烈地由两个相反的效果决定。 其中一个是由于制造的毛孔的收缩,在辐射的第一阶段期间致密化,这是致密化。 通过逐渐积聚在燃料材料中的裂变产物引发的膨胀现象,这种效果抵消了这种效果。 提出了一种模型,用于评估燃料颗粒孔隙率引起的辐射和热效应的变化,表明考虑到孔的点缺陷流动。 还给出了评估等温再烧结试验中孔隙率进展的模型的简化。 将模拟与在不同温度和辐射条件下的多种微结构上测量的实验数据进行比较。 (c)2018年elestvier b.v.保留所有权利。

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