Molecular dynamics simulation of interaction of a dislocation array from a crack tip with grain boundaries

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作者
Inst of Mechanics, Beijing, China [1 ]
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来源
Modell Simul Mater Sci Eng | / 2卷 / 231-244期
关键词
Cracks - Diffusion in solids - Dislocations (crystals) - Grain boundaries - Mathematical models - Stress concentration - Stress relaxation;
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摘要
The interaction of a dislocation array emitted from a crack tip under mode II loading with asymmetric tilt grain boundaries (GBs) is analysed by the molecular dynamics method. The GBs can generally be described by planar and linear matching zones and unmatching zones. All GBs are observed to emit dislocations. The GBs migrated easily due to their planar and linear matching structure and asymmetrical type. The diffusion induced by stress concentration is found to promote the GB migration. The transmissions of dislocations are either along the matched plane or along another plane depending on tilt angle θ. Alternate processes of stress concentration and stress relaxation take place ahead of the pileup. The stress concentration can be released either by transmission of dislocations, by atom diffusion along GBs, or by migration of GBs by formation of twinning bands. The simulated results also unequivocally demonstrate two processes, i.e. asymmetrical GBs evolving into symmetrical ones and unmatching zones evolving into matching ones during the loading process.
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