Effect of nanoscale amorphization on dislocation emission from a semi-elliptical surface crack tip in nanocrystalline materials
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Publication:5041580
DOI10.1177/10812865211045108OpenAlexW3206511826MaRDI QIDQ5041580
X. H. Peng, Fujun Jiang, Min Yu, Pihua H. Wen
Publication date: 14 October 2022
Published in: Mathematics and Mechanics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1177/10812865211045108
complex variable methodstress intensity factorsurface crackdislocation emissionnanoscale amorphization
Cites Work
- Mechanics and physics of disclinations in solids
- Continuum modeling of twinning, amorphization, and fracture: theory and numerical simulations
- Effect of nanoscale twin and dislocation pileup at twin boundary on crack blunting in nanocrystalline materials
- Dislocation emission criterion from a blunt crack tip
- Scaling confirmation of the thermodynamic dislocation theory
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