The purpose of this report is to collect in one publication and fit together work fragments presented in many conferences in the multi-year time span starting 2002 to the present dealing with the problem of large pore formation in U-Mo/Al dispersion fuel plates first observed in 2002. Hence, this report summarizes the excerpts from papers and reports on how we interpreted the relevant results from out-of-pile and in-pile tests and how this problem was dealt with. This report also provides a refined view to explain in detail and in a quantitative manner the underlying mechanism of the role of silicon in improving the irradiation performance of U-Mo/Al
High-density uranium (U) alloys with an increased concentration of U are being examined for the deve...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
U-Mo dispersions in Al-alloy matrix and monolithic fuels encased in Al-alloy are under development t...
RERTR U-Mo dispersion fuel plates are being developed for application in research reactors throughou...
RERTR U-Mo dispersion fuel plates are being developed for application in research reactors throughou...
<p></p><p>ABSTRACT Fuel elements based on U3Si2 particles dispersed in a pure Al matrix (known as di...
Published data concerning the interaction layer (IL) formed between U-xMo fuel alloy and aluminum (A...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
International audienceWithin the framework of the development of low enriched nuclear fuels for rese...
The starting microstructure of a dispersion fuel plate will impact the overall performance of the pl...
U-Mo/Al dispersion fuel is currently under development in the DOE???s Material Management and Minimi...
The starting microstructure of a dispersion fuel plate will impact the overall performance of the pl...
During fabrication of U-7Mo dispersion fuels, exposure to relatively high temperatures affects the f...
Recent irradiation tests of U{sub 3}Si-Al dispersion fuel have shown performance limitations of this...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
High-density uranium (U) alloys with an increased concentration of U are being examined for the deve...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
U-Mo dispersions in Al-alloy matrix and monolithic fuels encased in Al-alloy are under development t...
RERTR U-Mo dispersion fuel plates are being developed for application in research reactors throughou...
RERTR U-Mo dispersion fuel plates are being developed for application in research reactors throughou...
<p></p><p>ABSTRACT Fuel elements based on U3Si2 particles dispersed in a pure Al matrix (known as di...
Published data concerning the interaction layer (IL) formed between U-xMo fuel alloy and aluminum (A...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
International audienceWithin the framework of the development of low enriched nuclear fuels for rese...
The starting microstructure of a dispersion fuel plate will impact the overall performance of the pl...
U-Mo/Al dispersion fuel is currently under development in the DOE???s Material Management and Minimi...
The starting microstructure of a dispersion fuel plate will impact the overall performance of the pl...
During fabrication of U-7Mo dispersion fuels, exposure to relatively high temperatures affects the f...
Recent irradiation tests of U{sub 3}Si-Al dispersion fuel have shown performance limitations of this...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
High-density uranium (U) alloys with an increased concentration of U are being examined for the deve...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
U-Mo dispersions in Al-alloy matrix and monolithic fuels encased in Al-alloy are under development t...