A high-energy Xe ion irradiation experiment was conducted to investigate the temperature dependence of interdiffusion in bilayer Al-UMo samples under irradiation. The amount of interdiffusion achieved at a fixed dose with the increase of temperature showed a clear transition at 175 degrees C (with an estimated error in the range of +/- 10 degrees C) from temperature-independent to temperature-dependent behavior. The activation energy derived from the curve of interdiffusion quantity vs. irradiation temperature is 0.77 +/- 0.16 eV. This information has been utilized to understand the temperature effect on the interdiffusion process that occurred at the interfaces of U-Mo particles and the Al matrix in U-Mo/Al dispersion fuels, whose magnitud...
During fabrication of U-7Mo dispersion fuels, exposure to relatively high temperatures affects the f...
Results from postirradiation examinations and analyses of U-Mo/Al dispersion miniplates are presente...
A thermally induced dispersion model was developed to analyze for dispersive potential and determine...
Published data concerning the interaction layer (IL) formed between U-xMo fuel alloy and aluminum (A...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
The Reduced Enrichment for Research and Test Reactors (RERTR) program has been developing low enrich...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
In this study, the effects of interaction layer (IL) on thermophysical properties of U-7Mo/Al disper...
The Dispersion Analysis Research Tool (DART) contains models for fission-gas induced fuel swelling, ...
U-Mo alloys are being developed as low enrichment uranium fuels under the Reduced Enrichment for Res...
Recent irradiation tests of U{sub 3}Si-Al dispersion fuel have shown performance limitations of this...
U-Mo alloys are being developed as low enrichment uranium fuels under the Reduced Enrichment for Res...
High-performance research reactors require fuel that operates at high specific power to high fission...
Low-enriched uranium-molybdenum (U-Mo) alloy particles dispersed in aluminum alloy (e.g., dispersion...
During fabrication of U-7Mo dispersion fuels, exposure to relatively high temperatures affects the f...
Results from postirradiation examinations and analyses of U-Mo/Al dispersion miniplates are presente...
A thermally induced dispersion model was developed to analyze for dispersive potential and determine...
Published data concerning the interaction layer (IL) formed between U-xMo fuel alloy and aluminum (A...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
Interaction layer growth between U-Mo alloy fuel particles and Al in a dispersion fuel is a concern ...
The Reduced Enrichment for Research and Test Reactors (RERTR) program has been developing low enrich...
In order to advance understanding of the breakaway swelling behavior of U-Mo/Al dispersion fuel unde...
In this study, the effects of interaction layer (IL) on thermophysical properties of U-7Mo/Al disper...
The Dispersion Analysis Research Tool (DART) contains models for fission-gas induced fuel swelling, ...
U-Mo alloys are being developed as low enrichment uranium fuels under the Reduced Enrichment for Res...
Recent irradiation tests of U{sub 3}Si-Al dispersion fuel have shown performance limitations of this...
U-Mo alloys are being developed as low enrichment uranium fuels under the Reduced Enrichment for Res...
High-performance research reactors require fuel that operates at high specific power to high fission...
Low-enriched uranium-molybdenum (U-Mo) alloy particles dispersed in aluminum alloy (e.g., dispersion...
During fabrication of U-7Mo dispersion fuels, exposure to relatively high temperatures affects the f...
Results from postirradiation examinations and analyses of U-Mo/Al dispersion miniplates are presente...
A thermally induced dispersion model was developed to analyze for dispersive potential and determine...