First-Principles Study on the Mobility of Screw Dislocations in BCC Iron
Abstract
The fully two-dimensional Peierls barrier map of screw dislocations in BCC iron has been calculated using the first principles method to identify the migration path of a dislocation core. An efficient method to correct the effect of the finite size cell used in the first principles method on the energy of a lattice defect was devised to determine the accurate barrier profile. We find that the migration path is close to a straight line which is confined in a plane and the Peierls barrier profile is single-humped. This result clarifies a reason that the existing empirical potentials of BCC iron fail to predict the correct mobility path. A line tension model, incorporating these first principles calculation results, is used to predict the kink activation energy to be 0.73 eV in agreement with experiment.
Keywords
Cite
@article{arxiv.1110.4487,
title = {First-Principles Study on the Mobility of Screw Dislocations in BCC Iron},
author = {Mitsuhiro Itakura and Hideo Kaburaki and Masatake Yamaguchi},
journal= {arXiv preprint arXiv:1110.4487},
year = {2013}
}
Comments
v1: 25 pages, 16 figures. v2: Title change, Fixed minor typos. v3: Substantially revised. v4: To appear in Acta Mater