In the context of a comprehensive campaign for the characterisation of transmutation fuels for next generation nuclear reactors, the melting behaviour of mixed uranium-americium dioxides has been experimentally studied for the first time by laser heating, for Am concentrations up to 70 mol. % under different types of atmospheres. Extensive post-melting material characterisations were then performed by X-ray absorption spectroscopy and electron microscopy. The melting temperatures observed for the various compositions follow a markedly different trend depending on the experimental atmosphere. Uranium-rich samples melt at temperatures significantly lower (around 2700 K) when they are laser-heated in a strongly oxidizing atmosphere compressed ...
International audienceUranium–americium oxides U$_{1−y}$Am$_y$O$_{2±x}$ are currently investigated a...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
AbstractThe melting behaviour in the pseudo-binary system (UO2+NpO2) has been studied experimentally...
In the context of a comprehensive campaign for the characterisation of transmutation fuels for next ...
International audienceIn the context of a comprehensive campaign for the characterisation of transmu...
International audienceIn the context of a comprehensive campaign for the characterisation of transmu...
In the context of a comprehensive campaign for the characterisation of transmutation fuels for next ...
Abstract(Uranium+americium) mixed oxides are considered as potential targets for americium transmuta...
Abstract(Uranium+americium) mixed oxides are considered as potential targets for americium transmuta...
International audienceThe introduction of (U,Am)O2±x materials in the Fast Neutron Reactors requires...
International audienceIn order to use mixed U-Pu oxide ceramics in present and future nuclear reacto...
International audienceIn order to use mixed U-Pu oxide ceramics in present and future nuclear reacto...
International audienceMinor actinides (MA Am, Np, Cm) are created in the nuclear fuel through succes...
International audienceMinor actinides (MA Am, Np, Cm) are created in the nuclear fuel through succes...
The melting behaviour in the pseudo-binary system UO2 – NpO2 has been experimentally assessed for th...
International audienceUranium–americium oxides U$_{1−y}$Am$_y$O$_{2±x}$ are currently investigated a...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
AbstractThe melting behaviour in the pseudo-binary system (UO2+NpO2) has been studied experimentally...
In the context of a comprehensive campaign for the characterisation of transmutation fuels for next ...
International audienceIn the context of a comprehensive campaign for the characterisation of transmu...
International audienceIn the context of a comprehensive campaign for the characterisation of transmu...
In the context of a comprehensive campaign for the characterisation of transmutation fuels for next ...
Abstract(Uranium+americium) mixed oxides are considered as potential targets for americium transmuta...
Abstract(Uranium+americium) mixed oxides are considered as potential targets for americium transmuta...
International audienceThe introduction of (U,Am)O2±x materials in the Fast Neutron Reactors requires...
International audienceIn order to use mixed U-Pu oxide ceramics in present and future nuclear reacto...
International audienceIn order to use mixed U-Pu oxide ceramics in present and future nuclear reacto...
International audienceMinor actinides (MA Am, Np, Cm) are created in the nuclear fuel through succes...
International audienceMinor actinides (MA Am, Np, Cm) are created in the nuclear fuel through succes...
The melting behaviour in the pseudo-binary system UO2 – NpO2 has been experimentally assessed for th...
International audienceUranium–americium oxides U$_{1−y}$Am$_y$O$_{2±x}$ are currently investigated a...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
AbstractThe melting behaviour in the pseudo-binary system (UO2+NpO2) has been studied experimentally...