Title of article
An elasto-viscoplastic formulation based on fast Fourier transforms for the prediction of micromechanical fields in polycrystalline materials
Author/Authors
Ricardo A. Lebensohn، نويسنده , , Anand K. Kanjarla، نويسنده , , Philip Eisenlohr، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
11
From page
59
To page
69
Abstract
We present the infinitesimal-strain version of a formulation based on fast Fourier transforms (FFT) for the prediction of micromechanical fields in polycrystals deforming in the elasto-viscoplastic (EVP) regime. This EVP extension of the model originally proposed by Moulinec and Suquet to compute the local and effective mechanical behavior of a heterogeneous material directly from an image of its microstructure is based on an implicit time discretization and an augmented Lagrangian iterative procedure. The proposed model is first benchmarked, assessing the corresponding elastic and viscoplastic limits, the correct treatment of hardening, rate-sensitivity and boundary conditions, and the rate of convergence of the numerical method. In terms of applications, the EVP–FFT model is next used to examine how single crystal elastic and plastic directional properties determine the distribution of local fields at different stages of deformation.
Keywords
B. Anisotropic material , B. Elastic-viscoplastic material , B. Crystal plasticity , A. Microstructures , B. Polycrystalline material
Journal title
International Journal of Plasticity
Serial Year
2012
Journal title
International Journal of Plasticity
Record number
1255178
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