Coble creep in heterogeneous materials: The role of grain boundary engineering

被引:14
|
作者
Chen, Ying [1 ]
Schuh, Christopher A. [1 ]
机构
[1] MIT, Dept Mat Sci & Engn, Cambridge, MA 02139 USA
来源
PHYSICAL REVIEW B | 2007年 / 76卷 / 06期
关键词
D O I
10.1103/PhysRevB.76.064111
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Grain boundary engineering methods improve materials properties by modifying the composition and connectivity of grain boundary networks. A quantitative understanding of grain boundary network characteristics and their impact on materials properties is therefore desirable for both scientific and practical purposes. In this paper, we focus on the case of Coble creep, a viscous deformation mechanism prevailing at intermediate to high temperatures. Using computer simulations, we characterize the creep viscosity as a function of the fraction of slow-diffusing "special" grain boundaries in a two-dimensional honeycomb grain boundary network. This basically defines a new class of percolation problem where mass diffusion and force equilibrium are coupled in a complex way. The percolation threshold and scaling exponents are extracted from the simulation data and analyzed in the context of correlations and energy balance on the network. We also explore stress concentrations induced by the grain boundary character distribution, the effect of crystallographic constraints, and an empirical effective-medium equation that may be used with classical creep constitutive laws in order to predict the viscosity of a heterogeneous material.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Coble-creep response and variability of grain-boundary properties
    Tong, WS
    Rickman, JM
    Chan, HM
    Harmer, MP
    JOURNAL OF MATERIALS RESEARCH, 2002, 17 (02) : 348 - 352
  • [2] Coble-creep response and variability of grain-boundary properties
    W. S. Tong
    J. M. Rickman
    H. M. Chan
    M. P. Harmer
    Journal of Materials Research, 2002, 17 : 348 - 352
  • [3] Deformation and coble creep of nanocrystalline materials
    Pande, CS
    Masumura, RA
    NANOMATERIALS FOR STRUCTURAL APPLICATIONS, 2003, 740 : 3 - 14
  • [4] THEORY OF COBLE CREEP FOR IRREGULAR GRAIN STRUCTURES
    HAZZLEDINE, PM
    SCHNEIBEL, JH
    ACTA METALLURGICA ET MATERIALIA, 1993, 41 (04): : 1253 - 1262
  • [5] Whisker and hillock growth via coupled localized Coble creep, grain boundary sliding, and shear induced grain boundary migration
    Sarobol, P.
    Blendell, J. E.
    Handwerker, C. A.
    ACTA MATERIALIA, 2013, 61 (06) : 1991 - 2003
  • [6] ENHANCEMENT OF CREEP RATES IN ENGINEERING MATERIALS DUE TO GRAIN BOUNDARY PROCESSES.
    Langdon, Terence G.
    Mohamed, Farghalli A.
    Nuclear Technology, 1600, : 339 - 353
  • [7] Role of grain boundary plane in grain boundary engineering
    Randle, V.
    MATERIALS SCIENCE AND TECHNOLOGY, 2010, 26 (07) : 774 - 780
  • [8] Heterogeneous ceramics formed by grain boundary engineering
    Ivanova, D.
    Lima, E. M. C. L. G. P.
    Kovalevsky, A.
    Figueiredo, F. M. L.
    Kharton, V. V.
    Marques, F. M. B.
    IONICS, 2008, 14 (05) : 349 - 356
  • [9] Heterogeneous ceramics formed by grain boundary engineering
    D. Ivanova
    E. M. C. L. G. P. Lima
    A. Kovalevsky
    F. M. L. Figueiredo
    V. V. Kharton
    F. M. B. Marques
    Ionics, 2008, 14 : 349 - 356
  • [10] Electromigration-induced Coble creep in polycrystalline materials
    Lia, Zhonghua
    Dong, Yan
    Li, Shu
    Xu, Limin
    Sun, Jun
    APPLIED PHYSICS LETTERS, 2007, 91 (19)