"An atomistic study of defect energetics and diffusion with respect to composition and temperature in U and U-Mo alloys" Gyuchul Park, Benjamin Beeler, Maria Okuniewski, Journal of Nuclear Materials Vol. 552 2021 Link | ||
"Impact of Fabrication Techniques on U-10wt%Mo Fuel Microstructure Irradiated to Low Burnup" Sukanya Majumder, Gyuchul Park, Daniel Murray, Benjamin Beeler, Maria Okuniewski, Gyuchul Park, ANS Annual Meeting Vol. 2023 383-385 |
"Fission product distribution analysis in Zr lined U-Mo fuels using transmission electron microscopy and atom probe tomography" Nicole Rodriguez Perez, Sobhan Patnaik, shehab shousha, Mukesh Bachhav, Luca Capriotti, Benjamin Beeler, Geoffrey Beausoleil, Maria Okuniewski, TMS 2025 Annual Meeting March 23-27, (2025) | |
"High-Resolution TEM Characterization of Neutron-Irradiated U-10Mo Fuel in the Low Temperature and Low Burnup Regime" Sukanya Majumder, Gyuchul Park, Tiankai Yao, Kaustubh Bawane, Cameron Howard, Kourtney Wright, Laura Hawkins, Brandon Miller, Jonova Thomas, Benjamin Beeler, Maria Okuniewski, Materials in Nuclear Energy Systems (MiNES) December 11-14, (2023) | |
"Impact of Fabrication Techniques on U-10wt%Mo Fuel Microstructure Irradiated to Low Burnup" Sukanya Majumder, Gyuchul Park, Daniel Murray, Benjamin Beeler, Maria Okuniewski, ANS Annual Meeting June 11-14, (2023) |
"First-principles investigation of cerium and neodymium diffusion in BCC chromium and vanadium via vacancy-mediated transport" Benjamin Beeler, Larry K. Aagesen, Geoffrey L. Beausoleil, Maria A. Okuniewski, Shehab Shousha, [2025] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2025.156125 | |
"Ab initio molecular dynamics of paramagnetic uranium mononitride (UN) using disordered local moments" Benjamin Beeler, Antoine Claisse, Mohamed AbdulHameed, [2025] Computational Materials Science · DOI: 10.1016/j.commatsci.2025.114115 | |
"Impact of chemical ordering on thermodynamic properties of point defects and Xe substitutional in U-10Mo" Benjamin Beeler, Yongfeng Zhang, Ziang Yu, [2025] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2025.155997 | |
"Molecular-dynamics study of diffusional creep in uranium mononitride" [2025] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2025.156153 | |
"Versatile Cell Design for Molten Fluoride Salt Spectroscopy: Investigating Metal-Ion Speciation in Molten Fluoride Salts" Linu Malakkal, Michael E. Woods, Qiufeng Yang, Benjamin Beeler, Ruchi Gakhar, Garrett S. LeCroy, [2025] Journal of the American Chemical Society · DOI: 10.1021/jacs.5c07007 | |
"Atomistic Investigation of Plastic Deformation and Dislocation Motion in Uranium Mononitride"
Benjamin Beeler, Antoine Claisse, Mohamed AbdulHameed,
[2025]
Applied Sciences
· DOI: 10.3390/app15052666
Uranium mononitride (UN) is a promising advanced nuclear fuel due to its high thermal conductivity and high fissile density. However, many aspects of its mechanical behavior, particularly at reactor-relevant conditions, remain unclear. In this study, molecular dynamics (MD) simulations were employed to investigate the deformation behavior and dislocation motion in UN. We found that the Kocevski potential predicts the principal slip system as 12⟨110⟩{110}, aligning with experimental data. On the other hand, the Tseplyaev potential predicts slip to primarily occur on 12⟨110⟩{111}. MD simulations of stress–strain behavior were used to estimate the nanoindentation hardness, revealing that the Kocevski potential accurately predicts hardness even though it fails to model dynamic plasticity. Complete dislocation mobility functions have been fitted for the edge and screw dislocations in both the thermally activated and phonon-drag regimes. The 300 K linear mobility of the edge dislocation using the Tseplyaev potential was found to be 817 Pa−1·s−1, whereas that of the screw dislocation using the Kocevski potential was found to be 4546 Pa−1·s−1. At intermediate stresses, we observed that the subsonic steady-state motion of the edge dislocation in UN is intermittently interrupted by velocity jumps, reaching the average sound velocity. Finally, the threshold Schmid stress is calculated as 179–197 MPa, which gives an upper-limit estimate of the uniaxial yield stress of polycrystalline UN of 548–603 MPa. These findings, including the fitted dislocation mobility function, provide essential input for future plasticity and dislocation dynamics models of nuclear fuels. |
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"A Finite Difference informed Random Walk solver for simulating radiation defect evolution in polycrystalline structures with strongly inhomogeneous diffusivity" Yulan Li, Gyuchul Park, Benjamin Beeler, Shenyang Hu, Zirui Mao, [2025] Computational Materials Science · DOI: 10.1016/j.commatsci.2024.113371 | |
"Grain boundary self-diffusion and point defect interactions in α-U via molecular dynamics" Benjamin Beeler, Andrea Jokisaari, Khadija Mahbuba, [2025] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2024.155521 | |
"First-principles investigation of lanthanides diffusion in HCP zirconium via vacancy-mediated transport" Benjamin Beeler, Larry K. Aagesen, Geoffrey L. Beausoleil, Maria A. Okuniewski, Shehab Shousha, [2024] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2024.155310 | |
"Assessment of uranium nitride interatomic potentials" Benjamin Beeler, Conor O.T. Galvin, Michael W.D. Cooper, Mohamed AbdulHameed, [2024] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2024.155247 | |
"Vacancy-mediated transport and segregation tendencies of solutes in fcc nickel under diffusional creep: A density functional theory study" Sourabh Bhagwan Kadambi, Benjamin Beeler, Boopathy Kombaiah, Shehab Shousha, [2024] Physical Review Materials · DOI: 10.1103/physrevmaterials.8.083605 | |
"Magnetism and finite-temperature effects in UZr2: A density functional theory analysis" Benjamin Beeler, Shehab Shousha, [2024] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2024.155037 | |
"First-principles investigation of the thermophysical properties of NaCl, PuCl3, and NaCl-PuCl3 Molten salts" David Andersson, Benjamin Beeler, Kai Duemmler, [2024] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2024.154902 | |
"Calculation of grain boundary diffusion coefficients in γU-Mo using atomistic simulations" Benjamin Beeler, ATM Jahid Hasan, [2024] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2024.155190 | |
"An ab initio molecular dynamics study of varied compositions of the LiF-NaF-KF molten salt" Benjamin Beeler, Veronica Heyl, [2023] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2023.154641 | |
"First-principles-derived transport properties of Molten chloride salts" Michael Woods, Toni Karlsson, Ruchi Gakhar, Benjamin Beeler, Kai Duemmler, [2023] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2023.154601 | |
"Integrated simulation of U-10Mo monolithic fuel swelling behavior" Aaron Oaks, Shenyang Hu, Benjamin Beeler, Jeff Rest, Zhi-Gang Mei, Abdellatif Yacout, Bei Ye, [2023] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2023.154542 | |
"Correction: Analyzing the effect of pressure on the properties of point defects in γU–Mo through atomistic simulations" Yongfeng Zhang, ATM Jahid Hasan, Gyuchul Park, Shenyang Hu, Zhi-Gang Mei, Benjamin Beeler, [2022] MRS Advances · DOI: 10.1557/s43580-022-00436-7 | |
"An ab initio molecular dynamics investigation of the thermophysical properties of molten NaCl-MgCl2" Michael Woods, Toni Karlsson, Ruchi Gakhar, Benjamin Beeler, Kai Duemmler, [2022] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2022.153916 | |
"Analyzing the effect of pressure on the properties of point defects in γU–Mo through atomistic simulations" Yongfeng Zhang, ATM Jahid Hasan, Gyuchul Park, Shenyang Hu, Zhi-Gang Mei, Benjamin Beeler, [2022] MRS Advances · DOI: 10.1557/s43580-022-00350-y | |
"Ab initio molecular dynamics (AIMD) simulations of NaCl, UCl3 and NaCl-UCl3 molten salts" B.W. Beeler, D.A. Andersson, [2022] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2022.153836 | |
"Investigation of γ-(U,Zr) structural properties and its interfacial properties with liquid sodium using ab initio molecular dynamics" Benjamin Beeler, Maria Avramova, Ahmed Aly, [2022] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2022.153835 | |
"Evaluation of the anisotropic grain boundaries and surfaces of α-U via molecular dynamics" Benjamin Beeler, Andrea Jokisaari, Khadija Mahbuba, [2021] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2021.153072 | |
"An atomistic study of defect energetics and diffusion with respect to composition and temperature in γU and γU-Mo alloys" Benjamin Beeler, Maria A. Okuniewski, Gyuchul Park, [2021] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2021.152970 | |
"Ab initio molecular dynamics investigation of point defects in γ-U" David Andersson, Chao Jiang, Yongfeng Zhang, Benjamin Beeler, [2021] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2020.152714 | |
"Radiation driven diffusion in γU-Mo" Michael W.D. Cooper, Zhi-Gang Mei, Daniel Schwen, Yongfeng Zhang, Benjamin Beeler, [2021] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2020.152568 | |
"Defect cluster and nonequilibrium gas bubble associated growth in irradiated UMo fuels – A cluster dynamics and phase field model" Wahyu Setyawan, Benjamin W. Beeler, Jian Gan, Douglas E Burkes, Shenyang Hu, [2020] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2020.152441 | |
"Phase-field simulations of intergranular fission gas bubble behavior in U3Si2 nuclear fuel" David Andersson, Benjamin W. Beeler, Michael W.D. Cooper, Kyle A. Gamble, Yinbin Miao, Giovanni Pastore, Michael R. Tonks, Larry K. Aagesen, [2020] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2020.152415 | |
"Multi-Scale Modeling of Swelling in Accident-Tolerant U3Si2 Fuel" Karim Ahmed, Benjamin Beeler, Daniel Schwen, Yongfeng Zhang, David Andersson, Larry Aagesen, [2017] · DOI: 10.2172/1472119 | |
"Progress update on lower length scale research and development on U3Si2 fuel and FeCrAl cladding" Benjamin Beeler, Larry Aagesen, Chao Jiang, K. Ahmed, J. Yu, D. Schwen, D. Andersson, M. Baskes, M. Cooper, E. Martinez, Yongfeng Zhang, [2017] · DOI: 10.2172/1472101 | |
"A modified Embedded-Atom Method interatomic potential for uranium-silicide" Michael Baskes, David Andersson, Michael W.D. Cooper, Yongfeng Zhang, Benjamin Beeler, [2017] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2017.08.025 · EID: 2-s2.0-85027967820 | |
"A modified embedded-atom method interatomic potential for U-Si" [2017] Transactions of the American Nuclear Society · EID: 2-s2.0-85033481319 | |
"Effect of strain and temperature on the threshold displacement energy in body-centered cubic iron" Mark Asta, Peter Hosemann, Niels Grønbech-Jensen, Benjamin Beeler, [2016] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2016.03.017 · EID: 2-s2.0-84963585213 | |
"Atomistic modeling of high temperature uranium-zirconium alloy structure and thermodynamics" B. Beeler, C. Deo, M.I. Baskes, M.A. Okuniewski, A.P. Moore, [2015] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2015.10.016 · EID: 2-s2.0-84946780407 | |
"Effect of interfaces on radiation damage accumulation in FeNiAl maraging steels" [2015] Transactions of the American Nuclear Society · EID: 2-s2.0-84988891995 | |
"Atomistic ordering in body centered cubic Uranium-Zirconium alloy"
Ben Beeler, Michael Baskes, Maria Okuniewski, Chaitanya S. Deo, Alex P. Moore,
[2013]
Materials Research Society Symposium Proceedings
· DOI: 10.1557/opl.2013.517
· EID: 2-s2.0-84888074338
The metallic binary-alloy fuel Uranium-Zirconium is important for the use of the new generation of advanced fast reactors. Uranium-Zirconium goes through a phase transition at higher temperatures to a (gamma) Body Centered Cubic (BCC) phase. The BCC high temperature phase is particularly important, since the BCC phase corresponds to the temperature range in which the fast reactors will operate. A semi-empirical MEAM (Modified Embedded Atom Method) potential is presented for Uranium-Zirconium. The physical properties of the Uranium-Zirconium binary alloy were reproduced using Molecular Dynamics (MD) simulations and Monte Carlo (MC) simulations with the MEAM potential. This is a large step in making a computationally acceptable fuel performance code. |
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"Calculation of the displacement energy in b.c.c. U at 800 K" [2012] Transactions of the American Nuclear Society · EID: 2-s2.0-84876400924 | |
"First-principles calculations of the stability and incorporation of helium, xenon and krypton in uranium" B. Good, S. Rashkeev, C. Deo, M. Baskes, M. Okuniewski, B. Beeler, [2012] Journal of Nuclear Materials · DOI: 10.1016/j.jnucmat.2011.08.014 · EID: 2-s2.0-84860435889 | |
"First principles calculations for defects in U" B Good, S Rashkeev, C Deo, M Baskes, M Okuniewski, B Beeler, [2010] Journal of Physics Condensed Matter · DOI: 10.1088/0953-8984/22/50/505703 · EID: 2-s2.0-78649825146 | |
Source: ORCID/CrossRef using DOI |
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