AbstractThis paper discusses the preparation of titanium-doped UO2 microsphere by the method of sol–gel, its microstructure, pore distribution, grain sizes, and the titanium element distribution through metallographic microscope, scanning electron microscope (SEM) and energy diffraction spectrum (EDS) as well as its density with water immersion method. The experimental results show that at a certain sintering temperature, the adding of a small amount of titanium can obviously improve the sintering performance. In the experimental conditions, the optimum amount of doped titanium is under 0.3% (mass fraction) and the sintering temperature is 1250–1350°C. After the study on the activated sintering mechanism, it is proved that the material tran...
The controllable synthesis of colloidal titanium dioxide nanomaterials can yield materials with tuna...
The conventional sintering of titanium requires high temperatures to obtain high densities and low p...
Hydrated gel-microspheres of U, Pu, Th oxide or oxide plus carbon mixture of diameter 400-800µ ...
AbstractThis paper discusses the preparation of titanium-doped UO2 microsphere by the method of sol–...
Uranium nitride (UN)-uranium dioxide (UO2) composite fuels are being considered as an accident toler...
In this study, the process involved in the fabrication of a potential accident tolerant fuel is desc...
Powder-free sol-gel microsphere pelletisation and low temperature (1473 K) oxidative sintering proce...
The actual tendency all over the world is to manufacture fuel bundles capable to resist high burn-up...
The sol-gel method, which is among the methods used for the production of ThO2-UO2 mixed oxide fuel ...
AbstractUO2 beads from the sol supported precipitation method were calcined at a low temperature in ...
International audienceThe development of Generation IV sodium-cooled fast reactors (SFR) is currentl...
The sol-gel method, which is among the methods used for the production of ThO₂-UO₂ mixed oxide fuel ...
The actual tendency all over the world is to manufacture fuel bundles capable to resist high burn-up...
Sintering is a key step during the fabrication of UOx and MOx nuclear fuels used in the PWR reactors...
The recent prioritization on development of nuclear fuels with enhanced accident tolerance has led t...
The controllable synthesis of colloidal titanium dioxide nanomaterials can yield materials with tuna...
The conventional sintering of titanium requires high temperatures to obtain high densities and low p...
Hydrated gel-microspheres of U, Pu, Th oxide or oxide plus carbon mixture of diameter 400-800µ ...
AbstractThis paper discusses the preparation of titanium-doped UO2 microsphere by the method of sol–...
Uranium nitride (UN)-uranium dioxide (UO2) composite fuels are being considered as an accident toler...
In this study, the process involved in the fabrication of a potential accident tolerant fuel is desc...
Powder-free sol-gel microsphere pelletisation and low temperature (1473 K) oxidative sintering proce...
The actual tendency all over the world is to manufacture fuel bundles capable to resist high burn-up...
The sol-gel method, which is among the methods used for the production of ThO2-UO2 mixed oxide fuel ...
AbstractUO2 beads from the sol supported precipitation method were calcined at a low temperature in ...
International audienceThe development of Generation IV sodium-cooled fast reactors (SFR) is currentl...
The sol-gel method, which is among the methods used for the production of ThO₂-UO₂ mixed oxide fuel ...
The actual tendency all over the world is to manufacture fuel bundles capable to resist high burn-up...
Sintering is a key step during the fabrication of UOx and MOx nuclear fuels used in the PWR reactors...
The recent prioritization on development of nuclear fuels with enhanced accident tolerance has led t...
The controllable synthesis of colloidal titanium dioxide nanomaterials can yield materials with tuna...
The conventional sintering of titanium requires high temperatures to obtain high densities and low p...
Hydrated gel-microspheres of U, Pu, Th oxide or oxide plus carbon mixture of diameter 400-800µ ...