"Exploring radiation induced segregation mechanisms at grain boundaries in equiatomic CoCrFeNiMn high entropy alloy under heavy ion irradiation" Christopher Barr, James Nathaniel II, Yongqiang Wang, Mitra Taheri, Scripta Materialia Vol. 156 2018 80-84 Link | ||
"Grain Boundary Strain as a Determinant of Localized Sink Efficiency"
James Nathaniel II,
Acta Materialia
Vol. 226
2022
Link
The opportunity to achieve radiation tolerance in crystalline materials hinges on understanding the structure and response of grain boundary sinks to irradiation. A common descriptor of grain boundary efficiency as a defect sink is the denuded zone, which is a defect free zone adjacent to the grain boundary dictated by its ability to absorb radiation induced defects. This descriptor is often used at the mesoscale, which requires an averaging of absorption events. In this paper, we resolve the defect sink efficiency as a function of interfacial strain with respect to grain boundary character, and correlate high levels of grain boundary strain to an enhanced absorption efficiency. We also introduce a key relationship between localized strain in proximity with the grain boundary sink and the variation absorption efficiency associated with these regions, revealing the pitfalls of averaging absorption events along a grain boundary, and presenting a path forward toward improved models for denuded zones and localized grain boundary absorption phenomena. |
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"In Situ TEM Evidence of Temperature Dependent Defect Morphology in Heavy Ion Irradiated Nanocrystalline Molybdenum" James Nathaniel II, Pranav Kumar Suri, Mitra Taheri, Microscopy and Microanalysis Vol. 24 2018 1936-1937 Link | ||
"In Situ TEM Evidence of Temperature Dependent Defect Morphology in Heavy Ion Irradiated Nanocrystalline Molybdenum" James Nathaniel II, Microscopy and Microanalysis Vol. 24 2018 20181936-1937 Link | ||
"Unravelling Irradiation-Induced Detwinning Mechanisms via In Situ and Aberration-Corrected TEM combined with Atomistic Simulations" Pranav Kumar Suri, James Nathaniel II, Meimei Li, Mitra Taheri, Microscopy and Microanalysis Vol. Suppl 1 2018 1926-1927 Link |
The Nuclear Science User Facilities (NSUF) is the U.S. Department of Energy Office of Nuclear Energy's only designated nuclear energy user facility. Through peer-reviewed proposal processes, the NSUF provides researchers access to neutron, ion, and gamma irradiations, post-irradiation examination and beamline capabilities at Idaho National Laboratory and a diverse mix of university, national laboratory and industry partner institutions.
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