A new dynamic model for study of dislocation pattern formation


Autoria(s): 段祝平; 王文标; Zheng QR; 黄国君; Chen DW
Data(s)

1996

Resumo

Based on the principle given in nonlinear diffusion-reaction dynamics, a new dynamic model for dislocation patterning is proposed by introducing a relaxation time to the relation between dislocation density and dislocation flux. The so-called chemical potential like quantities, which appear in the model can be derived from variation principle for free energy functional of dislocated media, where the free energy density function is expressed in terms of not only the dislocation density itself but also their spatial gradients. The Linear stability analysis on the governing equations of a simple dislocation density shows that there exists an intrinsic wave number leading to bifurcation of space structure of dislocation density. At the same time, the numerical results also demonstrate the coexistence and transition between different dislocation patterns.

Identificador

http://dspace.imech.ac.cn/handle/311007/39110

http://www.irgrid.ac.cn/handle/1471x/4901

Idioma(s)

英语

Fonte

Acta Mechanica Sinica.1996,12(3):200-212

Palavras-Chave #Dislocation Patterning #Diffusion Reaction Dynamics #Variation Principle #Bifurcation Analysis #Metals
Tipo

期刊论文