Title of article
Phenomenology of shear-coupled grain boundary motion in symmetric tilt and general grain boundaries Original Research Article
Author/Authors
Eric R. Homer، نويسنده , , Stephen M. Foiles، نويسنده , , Elizabeth A. Holm، نويسنده , , David L. Olmsted، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2013
Pages
13
From page
1048
To page
1060
Abstract
Shear-coupled grain boundary motion is examined for a large number of grain boundaries including 73 〈1 0 0〉, 〈1 1 0〉 and 〈1 1 1〉 symmetric tilt boundaries. In the present work, the grain boundary motion is induced by a synthetic driving force as opposed to prior studies of shear coupling induced by applied shear. For those boundaries that are observed to undergo shear-coupled motion, the results based on the two driving forces agree well, both for experiments and simulations. This agreement also confirms the generality of the shear coupling mechanism over numerous boundaries and boundary types. The examination of boundary structure provides insight into the different trends that are observed. Shear coupling according to modes not predicted by the Frank–Bilby equation are also demonstrated. The temperature dependence of shear coupling is examined, and is consistent with prior work for symmetric tilt boundaries. While prior studies have emphasized symmetric tilt boundaries, some general grain boundaries exhibit shear coupling as well. In these boundaries, it is found that the shear coupling is either temperature independent, decreases in magnitude with increasing temperature or, in some cases, changes direction with temperature.
Keywords
Grain boundary migration , molecular dynamics , Shear-coupled migration , Bicrystal , Grain boundary dislocations
Journal title
ACTA Materialia
Serial Year
2013
Journal title
ACTA Materialia
Record number
1146767
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