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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Fuel - cladding chemical interaction in MOX fuel rods irradiated to high burnup in an advanced thermal reactor
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Fuel - cladding chemical interaction in MOX fuel rods irradiated to high burnup in an advanced thermal reactor

机译:在先进的热反应器中辐照到高燃耗的MOX燃料棒中燃料-包层的化学相互作用

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摘要

The performance of MOX fuel irradiated in the advanced thermal reactor, FUGEN, to a burnup of 47.5 GWd/t, was investigated by using a telescope, optical microscope, SEM and EPMA. Observations focused on elucidating the corrosion behavior of the cladding inner surface. A reaction layer was observed at burnups higher than about 35 GWd/t. The relationship between the thickness of the reaction layer and burnup was similar to that reported in the literature for conventional UO2 fuel and other MOX fuels. The existence of a plutonium spot near the outer surface of the fuel pellet had no significant effect on the thickness of the reaction layer. A bonding layer was observed on the cladding inner surface. Its morphology and elemental distributions were not so different from those in BWR UO2 fuel rods irradiated to high burnup, in which the fission gas release rate is high. In addition, the dependences of bonding layer formation on the burnup and linear heat rating were similar to results of UO2 fuel rods. It was, thus, suggested that the bonding layer formation mechanism was similar in both UO2 and MOX fuel rods. (c) 2006 Elsevier B.V. All rights reserved.
机译:使用望远镜,光学显微镜,SEM和EPMA研究了先进热反应器FUGEN辐照的MOX燃料燃烧至47.5 GWd / t的性能。观察集中在阐明包层内表面的腐蚀行为上。在燃耗高于约35 GWd / t时观察到反应层。反应层的厚度和燃耗之间的关系类似于常规UO 2燃料和其他MOX燃料的文献报道。靠近燃料颗粒外表面的of点的存在对反应层的厚度没有显着影响。在覆层内表面上观察到粘结层。它的形态和元素分布与裂变气体释放率高的高燃耗的BWR UO2燃料棒中的形态和元素分布没有太大不同。此外,结合层形成对燃耗和线性热额定值的依赖性与UO2燃料棒的结果相似。因此,建议在UO2和MOX燃料棒中,粘结层的形成机理相似。 (c)2006 Elsevier B.V.保留所有权利。

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