This project enhanced our theoretical capabilities geared towards establishing the basic science of a high-throughput protocol for the development of advanced nuclear fuel that should couple modern computational materials modeling and simulation tools, fabrication and characterization capabilities, and targeted high throughput performance testing experiments. The successful conclusion of this ER project allowed us to upgrade state-of-the-art modeling codes, and apply these modeling tools to ab initio energetics and thermodynamic assessments of phase diagrams of various mixtures of actinide alloys, propose a tool for optimizing composition of complex alloys for specific properties, predict diffusion behavior in diffusion couples made of acti...
International audienceThe capabilities of the Thermodynamic of Advanced Fuels – International Databa...
Uranium-zirconium alloys are being investigated for use in ultrahigh burn-up, metallic inert matrix ...
In advanced nuclear systems, the chemical compatibility of the fuel and cladding is imperative for s...
Spent nuclear fuel from commercial reactors is comprised of 95-99 percent UO{sub 2} and 1-5 percent ...
There have been numerous attempts to model fast reactor fuel behavior in the last 40 years. The US c...
Closed nuclear fuel cycles, based on separation from spent fuel and subsequent recycling of Pu, U as...
International audienceAllotropic transformations involving interface diffusion and precipitation are...
The METAPHIX programme is a collaboration between the Central Research Institute of Electric Power I...
U-Zr metallic fuels cladded in Fe-alloys are being considered for application in an advanced sodium-...
Monolithic fuel system with U-10 wt.% Mo (U10Mo) fuel alloy has been developed for the Materials Man...
Recovery of actinides is an integral part of a closed nuclear fuel cycle. Pyrometallurgical nuclear ...
An atomistic study of U-Zr alloys was conducted, a promising nuclear reactor metallic fuel. A semi-...
Thesis (Ph.D.), Program in Materials Science and Engineering, Washington State UniversityUnderstandi...
A first principles thermodynamic model for nuclear fuel is in an advanced stage of development. This...
International audienceThe capabilities of the Thermodynamic of Advanced Fuels – International Databa...
Uranium-zirconium alloys are being investigated for use in ultrahigh burn-up, metallic inert matrix ...
In advanced nuclear systems, the chemical compatibility of the fuel and cladding is imperative for s...
Spent nuclear fuel from commercial reactors is comprised of 95-99 percent UO{sub 2} and 1-5 percent ...
There have been numerous attempts to model fast reactor fuel behavior in the last 40 years. The US c...
Closed nuclear fuel cycles, based on separation from spent fuel and subsequent recycling of Pu, U as...
International audienceAllotropic transformations involving interface diffusion and precipitation are...
The METAPHIX programme is a collaboration between the Central Research Institute of Electric Power I...
U-Zr metallic fuels cladded in Fe-alloys are being considered for application in an advanced sodium-...
Monolithic fuel system with U-10 wt.% Mo (U10Mo) fuel alloy has been developed for the Materials Man...
Recovery of actinides is an integral part of a closed nuclear fuel cycle. Pyrometallurgical nuclear ...
An atomistic study of U-Zr alloys was conducted, a promising nuclear reactor metallic fuel. A semi-...
Thesis (Ph.D.), Program in Materials Science and Engineering, Washington State UniversityUnderstandi...
A first principles thermodynamic model for nuclear fuel is in an advanced stage of development. This...
International audienceThe capabilities of the Thermodynamic of Advanced Fuels – International Databa...
Uranium-zirconium alloys are being investigated for use in ultrahigh burn-up, metallic inert matrix ...
In advanced nuclear systems, the chemical compatibility of the fuel and cladding is imperative for s...