Generation of c-component edge dislocations in α-zirconium during neutron irradiation – An atomistic study
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference35 articles.
1. Dislocation pinning by glissile interstitial loops in a nickel crystal: A molecular-dynamics study
2. Dislocation Pinning by Small Interstitial Loops: A Molecular Dynamics Study
3. Void formation in irradiated Nickel 270
4. Microstructure evolution during irradiation
5. Atomistic study of the generation, interaction, accumulation and annihilation of cascade-induced defect clusters
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1. EAM Potentials for Characterisation of HCP Nuclear Materials;Forcefields for Atomistic-Scale Simulations: Materials and Applications;2022
2. An Atomistic Modelling Study of the Properties of Dislocation Loops in Zirconium;Journal of Nuclear Materials;2021-04
3. The effect of local chemical environment on the energetics of stacking faults and vacancy platelets in α-zirconium;Journal of Nuclear Materials;2020-11
4. Effects of atom–electron energy exchange on radiation damage in zirconium;Nuclear Materials and Energy;2020-08
5. Atomistic simulation study of clustering and evolution of irradiation-induced defects in zirconium;Journal of Nuclear Materials;2020-04
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