Publication | Open Access
Dislocation Cross-Slip in Nanocrystalline fcc Metals
81
Citations
31
References
2008
Year
Dislocation Cross-slipEngineeringSevere Plastic DeformationDislocation PropagationSoft MatterMolecular DynamicsGrain BoundariesNanoscale ModelingMicrostructure-strength RelationshipMaterials ScienceMaterials EngineeringPhysicsStrain LocalizationSolid MechanicsPlasticityNanocrystalline MaterialMicrostructureDislocation InteractionGrain Boundary StructureApplied PhysicsMechanics Of Materials
Constant strain rate molecular dynamics simulations of nanocrystalline Al demonstrate that a significant amount of dislocations that have nucleated at the grain boundaries, exhibit cross-slip via the Fleischer mechanism as they propagate through the grain. The grain boundary structure is found to strongly influence when and where cross-slip occurs, allowing the dislocation to avoid local stress concentrations that otherwise can act as strong pinning sites for dislocation propagation.
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