9_30_2022

Particles comprised of a thermal neutron absorbing material (HfAl3) are dispersed in a metal matrix material with high thermal conductivity (aluminum) to conduct the heat generated by neutron capture away from the fuel and materials. This metal matrix composite is very promising for use as a conduction-cooled neutron absorber and has the potential to be useful as a shroud or heat sink for testing advanced fast reactor fuels and materials in an existing thermal reactor. To design and optimize the absorber block system for advanced reactor designs, fundamental understanding of the irradiation effect on material properties is necessary. This dataset contains TEM characterization results of neutron irradiated HfAl3-Al composite specimens. It is focused on the irradiation induced defects (dislocation lines and loops) characterization using the on-zone axis bright field STEM technique. This data was collected using a FEI Tecnai G2 F30 S/TEM at the Microscopy and Characterization Suite (MaCS), Center for Advanced Energy Studies (CAES).

Data and Resources

Datatype Name Last Modified
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KGT 3595 surface_009.tif

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KGT 3595 surface_009.png

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KGT 3595 surface_004.tif

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KGT 3595 surface_004.png

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KGT 3595 surface_003.tif

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KGT 3595 surface_003.png

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TIFF
KGT 3595 surface_012.tif

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KGT 3595 surface_012.png

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KGT 3595 surface_008.tif

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KGT 3595 surface_008.png

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KGT 3595 surface_001.tif

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KGT 3595 surface_001.png

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KGT 3595 surface_013.tif

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KGT 3595 surface_013.png

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KGT 3595 surface_002.tif

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KGT 3595 surface_002.png

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KGT 3595 surface_007.tif

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KGT 3595 surface_007.png

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KGT 3595 surface_011.tif

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KGT 3595 surface_011.png

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TIFF
KGT 3595 surface_005.tif

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KGT 3595 surface_005.png

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TIFF
KGT 3595 surface_006.tif

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KGT 3595 surface_006.png

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KGT 3595 surface_010.tif

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PNG
KGT 3595 surface_010.png

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Additional Info

Field Value
Author Donna Guillen, Yu Lu, Yaqiao Wu
Last Updated December 6, 2024, 18:48 (UTC)
Created December 6, 2024, 18:48 (UTC)
DOI Link https://doi.org/10.48806/2478162
Instrument FEI Tecnai G2 F30 STEM
Statement of Credit This work was performed by Battelle Energy Alliance, LLC under the DOE Idaho Operations Contract DE-AC07-05ID14517. Neutron irradiation in the ATR was conducted through DOE Office of Nuclear Energy, Nuclear Science User Facilities (NSUF) project BSU-15-8242. Post-irradiation examination was performed through NSUF Rapid Turnaround Experiment 21-4280.
parent_folder tem_characterization_of_neutron_irradiated_hfal3-al_composite_specimens_kgt_3595
parent_title KGT 3595