Thermodynamic theory of dislocation-mediated plasticity

被引:144
|
作者
Langer, J. S. [1 ]
Bouchbinder, Eran [2 ]
Lookman, Turab [3 ]
机构
[1] Univ Calif Santa Barbara, Dept Phys, Santa Barbara, CA 93106 USA
[2] Weizmann Inst Sci, Dept Chem Phys, IL-76100 Rehovot, Israel
[3] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87544 USA
关键词
Dislocation theory; Hardening; Thermodynamics; DEFORMATION; FLOW; STRESS;
D O I
10.1016/j.actamat.2010.03.009
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We reformulate the theory of polycrystalline plasticity, in externally driven, nonequilibrium situations, by writing equations of motion for the flow of energy and entropy associated with dislocations. Within this general framework, and using a minimal model of thermally assisted depinning with essentially only one adjustable parameter, we find that our theory fits the strain-hardening data for Cu over a wide range of temperatures and six decades of strain rate. We predict the transition between stage II and stage III hardening, including the observation that this transition occurs at smaller strains for higher temperatures. We also explain why strain-rate hardening is very weak up to large rates; and, with just one additional number, we accurately predict the crossover to power-law rate hardening in the strong-shock regime. Our analysis differs in several important respects from conventional dislocation-mediated continuum theories. We provide some historical background and discuss our rationale for these differences. (C) 2010 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:3718 / 3732
页数:15
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