Title of article :
Hybrid dislocation dynamics based strain hardening constitutive model
Author/Authors :
N. Bertin، نويسنده , , L. Capolungo، نويسنده , , I.J. Beyerlein، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
26
From page :
119
To page :
144
Abstract :
In this article, a Hybrid strain-hardening Model for slip driven plasticity is introduced. The model distinguishes between the contributions of glissile and stored dislocations, and polar and non-polar dislocations. The core idea relies on a two step-approach in which all glissile non-polar dislocations on given slip systems are represented by a virtual dislocation loop which evolution is modeled by a dislocation dynamics approach, while transformations of dislocations from glissile to stored, resulting from short-range dislocation–dislocation interactions, are based on phenomenological relations informed by dislocation dynamics simulations on dislocation pair interactions. The constitutive model developed should then allow for a reduction in fitting parameters and should be suitable to predict complex loading. Besides, the Hybrid Model is able to predict dislocation densities for all kinds of populations, including junctions. As a first application, the resulting Hybrid continuum/discrete dislocation density Model is utilized for predicting the stress–strain response of single crystal aluminum as a function of its orientation, slip activity, and junction formation.
Keywords :
Hybrid model , B. Constitutive behavior , B. Crystal plasticity , A. Dislocations , Strain hardening
Journal title :
International Journal of Plasticity
Serial Year :
2013
Journal title :
International Journal of Plasticity
Record number :
1255483
Link To Document :
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