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Glide of dislocations in <1 1 1>{3 2 1} slip system: an atomistic study.

Authors :
Terentyev, D.
Bakaev, A.
Van Neck, D.
Zhurkin, E. E.
Source :
Philosophical Magazine; Jan2016, Vol. 96 Issue 1, p71-83, 13p
Publication Year :
2016

Abstract

Atomistic calculations are performed to investigate plastic slip in the &lt;1 1 1&gt;{3 2 1} system in body-centred cubic iron. Several modern interatomic potentials, developed over the last decade, are applied to compute the stacking faultγ-line energy in the {3 2 1} plane and the results are compared with theab initioprediction. The applied potentials have shown strong deviations, but several potentials acquired good qualitative agreement with theab initiodata. Depending on the applied potential, the lowest value of the Peierls stress for the edge dislocation (ED) is 50&#160;MPa (Ackland and Bacon from 1997) and the highest is 550&#160;MPa (Dudarev and Derlet from 2005), while for the screw dislocation it is much higher, in the range 1–2&#160;GPa. At finite temperature, however, the flow stress of the ED is found to decrease exponentially reaching a negligible value at about 200&#160;K, irrespective of the applied potential. On the basis of the data obtained using Ackland–Mendelev potential from 2004, we conclude that the slip resistance of the &lt;1 1 1&gt;{3 2 1} system is in between the resistance of the &lt;1 1 1&gt;{1 1 0} and &lt;1 1 1&gt;{1 1 2} slip systems. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14786435
Volume :
96
Issue :
1
Database :
Complementary Index
Journal :
Philosophical Magazine
Publication Type :
Academic Journal
Accession number :
112405183
Full Text :
https://doi.org/10.1080/14786435.2015.1126369