Site dependence of surface dislocation nucleation in ceramic nanoparticles - Archive ouverte HAL
Article Dans Une Revue npj Computational Materials Année : 2021

Site dependence of surface dislocation nucleation in ceramic nanoparticles

Résumé

The extremely elevated strength of nanoceramics under compression arises from the necessity to nucleate highly energetic dislocations from the surface, in samples that are too small to contain pre-existing defects. Here, we investigate the site dependence of surface dislocation nucleation in MgO nanocubes using a combination of molecular dynamics simulations, nudgedelastic-band method calculations and rate theory predictions. Using an original simulation setup, we obtain a complete mapping of the potential dislocation nucleation sites on the surface of the nanoparticle and find that, already at intermediate temperature, not only nanoparticle corners are favorable nucleation sites, but also the edges and even regions on the side surfaces, while other locations are intrinsically unfavorable. Results are discussed in the context of recent in situ TEM experiments, sheding new lights on the deformation mechanisms happening during ceramic nanopowder compaction and sintering processes.
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Dates et versions

hal-03222412 , version 1 (10-05-2021)

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Jonathan Amodeo, Emile Maras, David Rodney. Site dependence of surface dislocation nucleation in ceramic nanoparticles. npj Computational Materials, 2021, 7, ⟨10.1038/s41524-021-00530-8⟩. ⟨hal-03222412⟩
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