Survey of computed grain boundary properties in face-centered cubic metals-II: Grain boundary mobility

被引:334
作者
Olmsted, David L. [1 ]
Holm, Elizabeth A. [1 ]
Foiles, Stephen M. [1 ]
机构
[1] Sandia Natl Labs, Albuquerque, NM 87185 USA
基金
美国能源部;
关键词
Grain boundary migration; MD-simulations; Grain boundary roughening; HIGH-PURITY LEAD; ROUGHENING TRANSITION; MOLECULAR-DYNAMICS; MIGRATION; ALUMINUM; SIMULATION; DEPENDENCE; BICRYSTALS; MOTION;
D O I
10.1016/j.actamat.2009.04.015
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The absolute grain boundary mobility of 388 nickel grain boundaries was calculated using a synthetic driving force molecular dynamics method; complete results appear in the supplementary materials. Over 255 of the boundaries, including most of the non-Sigma 3 highest mobility boundaries, moved by a coupled shear mechanism. The range of non-shearing boundary mobilities is from 40 to 400 m/s GPa. except for Sigma 3 incoherent twins which have mobilities of 200-2000 m/s GPa. Some boundaries, including all the < 1 1 1 > twist boundaries, are immobile within the resolution of the simulation. Boundary mobility is not correlated with scalar parameters such as disorientation angle. Sigma value, excess volume or boundary energy. Boundaries less than 15 degrees from each other in five-dimensional crystallographic space tend to have similar mobilities. Some boundaries move via a non-activated motion mechanism, which greatly increases low-temperature mobility. Thermal roughening of grain boundaries is widely observed, with estimated roughening temperatures substantially among boundaries. (C) 2009 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:3704 / 3713
页数:10
相关论文
共 39 条
[1]  
[Anonymous], 2007, LAMMPS LARGE SCALE A
[2]  
AUST KT, 1959, T AM I MIN MET ENG, V215, P820
[3]  
AUST KT, 1959, T AM I MIN MET ENG, V215, P119
[4]   Duality of dislocation content of grain boundaries [J].
Cahn, J. W. ;
Mishin, Y. ;
Suzuki, A. .
PHILOSOPHICAL MAGAZINE, 2006, 86 (25-26) :3965-3980
[5]   Coupling grain boundary motion to shear deformation [J].
Cahn, John W. ;
Mishin, Yuri ;
Suzuki, Akira .
ACTA MATERIALIA, 2006, 54 (19) :4953-4975
[6]   IMPURITY-DRAG EFFECT IN GRAIN BOUNDARY MOTION [J].
CAHN, JW .
ACTA METALLURGICA, 1962, 10 (SEP) :789-&
[7]   Intrinsic grain boundary mobility in alumina [J].
Dillon, Shen J. ;
Harmer, Martin P. .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2006, 89 (12) :3885-3887
[8]   Computation of grain boundary stiffness and mobility from boundary fluctuations [J].
Foiles, Stephen M. ;
Hoyt, J. J. .
ACTA MATERIALIA, 2006, 54 (12) :3351-3357
[9]   Grain boundary migration in Fe-3.5% Si bicrystals with [001] tilt boundaries [J].
Furtkamp, M ;
Gottstein, G ;
Molodov, DA ;
Semenov, VN ;
Shvindlerman, LS .
ACTA MATERIALIA, 1998, 46 (12) :4103-4110
[10]   Grain boundary migration in metals: Recent developments [J].
Gottstein, G ;
Molodov, DA ;
Shvindlerman, LS .
INTERFACE SCIENCE, 1998, 6 (1-2) :7-22