烧结
微观结构
材料科学
同种类的
陶瓷
矿物学
冶金
结晶学
热力学
化学
物理
作者
Nicolas Clavier,Malvina Massonnet,Laurent Claparède,Renaud Podor,Paul‐Henri Imbert,Julien Martinez,Nicolas Dacheux
摘要
Abstract The effects of atmosphere and cerium content on the densification and the final microstructure of homogeneous U 1‐x Ce x O 2+δ solid solutions (x = 0.10; 0.25; 0.50) were investigated. Dilatometric studies first revealed that while the cerium content only slightly modifies sintering under an Ar/H 2 atmosphere, a change of the gas to argon dramatically modifies densification kinetics. As a result, samples prepared under Ar/H 2 exhibit a dense microstructure with micrometric grains. Conversely, samples sintered under argon appeared to be less densified but with larger grains. These changes were correlated with the variation of the final O/M stoichiometry (M = U+Ce) and illustrated by the construction of sintering maps. Finally, grain growth was found to be driven by grain boundary motion when the O/M ratio remained close to 2.00, while usual power laws did not apply for most hyper‐stoichiometric samples. The first values of activation energy for the sintering of U 1‐x Ce x O 2+δ solid solutions under an Ar/H 2 atmosphere were also determined.
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