AbstractThe present work highlights the importance, in nuclear fuel safety and performance, of the very high oxygen potentials of actinide oxides (ThO2, UO2, NpO2, PuO2) at temperatures close to melting (around 3000K), i.e. a tendency to oxidize their environment and chemically react with it.Laser heating coupled with fast pyrometry constitutes an effective approach of studying the melting behaviour of these materials under a controlled atmosphere. Novel results reported in this work show that earlier data are confirmed, with the current technique, only for compounds with a relatively low oxygen potential, such as ThO2 and UO2 and their mixed compositions
AbstractThe melting behaviour in the pseudo-binary system (UO2+NpO2) has been studied experimentally...
The melting behaviour of mixed uranium-plutonium dioxides (MOX) has been investigated by laser heati...
Recently, novel container-less laser heating experimental data have been published on the melting be...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
AbstractThe present work highlights the importance, in nuclear fuel safety and performance, of the v...
AbstractRecently, novel container-less laser heating experimental data have been published on the me...
AbstractThe high-temperature phase diagram of the UO2–ThO2 system has been experimentally revisited ...
This work revisits the melting behaviour of neptunium dioxide, an actinide compound which can be pro...
AbstractA laser heating approach combined with fast pyrometry in a thermal arrest method was used to...
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...
AbstractThe melting behaviour in the pseudo-binary system (UO2+NpO2) has been studied experimentally...
The melting behaviour of mixed uranium-plutonium dioxides (MOX) has been investigated by laser heati...
Recently, novel container-less laser heating experimental data have been published on the melting be...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
The present work highlights the importance, in nuclear fuel safety and performance, of the very high...
AbstractThe present work highlights the importance, in nuclear fuel safety and performance, of the v...
AbstractRecently, novel container-less laser heating experimental data have been published on the me...
AbstractThe high-temperature phase diagram of the UO2–ThO2 system has been experimentally revisited ...
This work revisits the melting behaviour of neptunium dioxide, an actinide compound which can be pro...
AbstractA laser heating approach combined with fast pyrometry in a thermal arrest method was used to...
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...
AbstractThe melting behaviour in the pseudo-binary system (UO2+NpO2) has been studied experimentally...
The melting behaviour of mixed uranium-plutonium dioxides (MOX) has been investigated by laser heati...
Recently, novel container-less laser heating experimental data have been published on the melting be...