Simulation of the effect of strengthening-phase particles on the plastic deformation of a two-dimensional polycrystal

被引:7
作者
Baimova, Yu A. [1 ]
Dmitriev, S. V. [1 ]
Nazarov, A. A. [1 ]
机构
[1] Russian Acad Sci, Inst Problems Met Superplast, Ufa 450001, Bashkortostan, Russia
关键词
polycrystal; nanomaterial; plastic deformation; grain boundary sliding; simulation; molecular dynamics; strengthening particles; MG-SC ALLOY; 2ND-PHASE PARTICLES; DISLOCATION GLIDE; GRAIN-GROWTH; MICROSTRUCTURE; PRECIPITATION; REFINEMENT; COPPER;
D O I
10.1134/S0031918X12030027
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The method of molecular dynamics was used to investigate the effect of strengthening-phase particles on the process of plastic deformation in two-dimensional nanocrystalline material at given temperature, hydrostatic pressure, and the maximum shear stress. We consider the deformation of a single-phase nanocrystal (material 1); a nanocrystal with particles located at grain boundaries and triple junctions and having atoms whose size is 10% larger than that of the matrix atoms (material 2), 10% less than the size of the matrix atoms (material 3), and is equal to it (material 4). The rate of creep for materials 1 and 2 was approximately the same, but the deformation mechanisms were different. The lowest creep rate was obtained for material 4. It has been shown that in the presence of second-phase inclusions, despite the small grain size, a significant contribution to the material deformation comes from the motion of dislocations, especially in the case of material 2 with incoherent particles. The understanding of the deformation processes developed using model polycrystals can be used for elucidating the precipitation-hardening mechanisms of alloys and the structure evolution of such materials during plastic deformation.
引用
收藏
页码:302 / 311
页数:10
相关论文
共 38 条
[21]   Phase field simulations of grain growth in two-dimensional systems containing finely dispersed second-phase particles [J].
Moelans, N ;
Blanpain, B ;
Wollants, P .
ACTA MATERIALIA, 2006, 54 (04) :1175-1184
[22]   Computer simulations of Orowan process controlled dislocation glide in particle arrangements of various randomness [J].
Mohles, V ;
Fruhstorfer, B .
ACTA MATERIALIA, 2002, 50 (10) :2503-2516
[23]   Simulation of dislocation glide in precipitation hardened materials [J].
Mohles, V ;
Rönnpagel, D ;
Nembach, E .
COMPUTATIONAL MATERIALS SCIENCE, 1999, 16 (1-4) :144-150
[24]  
Nakatani A, 2007, SOLID MECH APPL, V144, P25
[25]   Computer Simulation of the Effect of Ultrasound and Annealing on the Structure of a Two-Dimensional Severely Deformed Nanocrystalline Material [J].
Nazarova, A. A. ;
Dmitriev, S. V. ;
Baimova, Yu. A. ;
Mulyukov, R. R. ;
Nazarov, A. A. .
PHYSICS OF METALS AND METALLOGRAPHY, 2011, 111 (05) :513-519
[26]  
Nazarova A. A., 2009, FUNDAM PROBL SOVR MA, V6, P36
[27]   Coarse second phase particle size distribution of UFG all alloys processed by severe plastic deformation: Its effect on cavitation during superplastic deformation [J].
Park, Kyung-Tae ;
Lee, Eui Gil ;
Nam, Won Jong ;
Lee, Yong Shin .
THERMEC 2006, PTS 1-5, 2007, 539-543 :2859-+
[28]  
Schonfelder B., 2005, ACTA MAT, V53, P1957
[29]   THE INFLUENCE OF 2ND PHASE PARTICLES ON THE FREE DISLOCATION DENSITY DURING CREEP OF STAINLESS-STEEL [J].
SINGER, RF ;
BLUM, W ;
NIX, WD .
SCRIPTA METALLURGICA, 1980, 14 (07) :755-760
[30]   Microstructure behavior of Al-Mg-Sc alloy processed by ECAP at elevated temperature [J].
Sitdikov, O. ;
Sakai, T. ;
Avtokratova, E. ;
Kaibyshev, R. ;
Tsuzaki, K. ;
Watanabe, Y. .
ACTA MATERIALIA, 2008, 56 (04) :821-834