Title of article
Homogenization of two-phase elasto-plastic composite materials and structures: Study of tangent operators, cyclic plasticity and numerical algorithm
Author/Authors
I. Doghri، نويسنده , , A. Ouaar، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
32
From page
1681
To page
1712
Abstract
We develop homogenization schemes and numerical algorithms for two-phase elasto-plastic composite materials and
structures. A Hill-type incremental formulation enables the simulation of unloading and cyclic loadings. It also allows
to handle any rate-independent model for each phase. We study the crucial issue of tangent operators: elasto-plastic (or
‘‘continuum’’) versus algorithmic (or ‘‘consistent’’), and anisotropic versus isotropic. We apply two methods of extraction
of isotropic tangent moduli. We compare mathematically the stiffnesses of various tangent operators. All rate
equations are discretized in time using implicit integration. We implemented two homogenization schemes: Mori–
Tanaka and a double inclusion model, and two plasticity models: classical J2 plasticity and Chaboche s model with
non-linear kinematic and isotropic hardenings. We consider composites with different properties and present several
discriminating numerical simulations. In many cases, the results are validated against finite element (FE) or experimental
data. We integrated our homogenization code into the FE program ABAQUS using a user material interface
UMAT. A two-scale procedure allows to compute realistic structures made of non-linear composite materials within
reasonable CPU time and memory usage; examples are shown
Keywords
homogenization , Micro-mechanics , Numerical algorithms , Plasticity , Finite elements , Composites
Journal title
International Journal of Solids and Structures
Serial Year
2003
Journal title
International Journal of Solids and Structures
Record number
448051
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