In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel under a high-power irradiation condition, the effects of fuel-matrix interaction on the fuel performance of U-Mo/Al dispersion fuel were investigated. Fission gas release into large interfacial pores between interaction layers and the Al matrix was analyzed using both mechanistic models and observations of the post-irradiation examination results of U-Mo dispersion fuels. Using the model predictions, advantageous fuel design parameters are recommended to prevent breakaway swelling
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
A high-energy Xe ion irradiation experiment was conducted to investigate the temperature dependence ...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
The Dispersion Analysis Research Tool (DART) contains models for fission-gas induced fuel swelling, ...
Fission-induced swelling of U-Mo/Al dispersion fuel meat was measured using microscopy images obtain...
U-Mo/Al dispersion fuel is currently under development in the DOE???s Material Management and Minimi...
In order to investigate how the microstructure of fuel/matrix-interaction (FMI) layers change during...
RERTR U-Mo dispersion fuel plates are being developed for application in research reactors throughou...
Published data concerning the interaction layer (IL) formed between U-xMo fuel alloy and aluminum (A...
The purpose of this report is to collect in one publication and fit together work fragments presente...
Recent irradiation tests of U{sub 3}Si-Al dispersion fuel have shown performance limitations of this...
High-performance research reactors require fuel that operates at high specific power to high fission...
U-Mo/Al dispersion fuel irradiated to high burnup at high power (high fission rate) exhibited micros...
The dispersion fuel concept offers a method for minimizing irradiation- induced property changes in ...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
A high-energy Xe ion irradiation experiment was conducted to investigate the temperature dependence ...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
The Dispersion Analysis Research Tool (DART) contains models for fission-gas induced fuel swelling, ...
Fission-induced swelling of U-Mo/Al dispersion fuel meat was measured using microscopy images obtain...
U-Mo/Al dispersion fuel is currently under development in the DOE???s Material Management and Minimi...
In order to investigate how the microstructure of fuel/matrix-interaction (FMI) layers change during...
RERTR U-Mo dispersion fuel plates are being developed for application in research reactors throughou...
Published data concerning the interaction layer (IL) formed between U-xMo fuel alloy and aluminum (A...
The purpose of this report is to collect in one publication and fit together work fragments presente...
Recent irradiation tests of U{sub 3}Si-Al dispersion fuel have shown performance limitations of this...
High-performance research reactors require fuel that operates at high specific power to high fission...
U-Mo/Al dispersion fuel irradiated to high burnup at high power (high fission rate) exhibited micros...
The dispersion fuel concept offers a method for minimizing irradiation- induced property changes in ...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
A high-energy Xe ion irradiation experiment was conducted to investigate the temperature dependence ...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...