Publication | Open Access
Dislocation Core Energies and Core Fields from First Principles
169
Citations
21
References
2009
Year
EngineeringMechanical EngineeringDislocation ArrayMechanicsMicrostructure-strength RelationshipPhysicsStrain LocalizationBcc Iron ShowSolid MechanicsDefect FormationAb-initio MethodMicrostructureDislocation InteractionDislocation Core EnergiesApplied PhysicsCondensed Matter PhysicsAb Initio CalculationsContinuum ModelingMechanics Of Materials
Ab initio calculations in bcc iron show that a 111 screw dislocation induces a short-range dilatation field in addition to the Volterra elastic field. This core field is modeled in anisotropic elastic theory using force dipoles. The elastic modeling thus better reproduces the atom displacements observed in ab initio calculations. Including this core field in the computation of the elastic energy allows deriving a core energy which converges faster with the cell size, thus leading to a result which does not depend on the geometry of the dislocation array used for the simulation.
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