Title of article :
A multiscale mean-field homogenization method for fiber-reinforced composites with gradient-enhanced damage models
Author/Authors :
Wu، نويسنده , , L. and Noels، نويسنده , , L. R. Adam ، نويسنده , , L. and Doghri، نويسنده , , I.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
16
From page :
164
To page :
179
Abstract :
In this work, a gradient-enhanced homogenization procedure is proposed for fiber reinforced materials. In this approach, the fibers are assumed to remain linear elastic while the matrix material is modeled as elasto-plastic coupled with a damage law described by a non-local constitutive model. Toward this end, the mean-field homogenization is based on the knowledge of the macroscopic deformation tensors, internal variables and their gradients, which are applied to a micro-structural representative volume element (RVE). The macro-stress is then obtained from a homogenization procedure. The methodology holds for 2-phase composites with moderate fiber volume ratios, and for which, at the RVE size, the matrix can be considered as homogeneous isotropic and the ellipsoidal fibers can be considered as homogeneous transversely isotropic. Under these assumptions, the method is successfully applied to simulate the damage process occurring in unidirectional carbon-fiber reinforced epoxy composites submitted to different loading conditions.
Keywords :
Gradient-enhanced , Composite , Mean-field homogenization , Fiber-reinforced materials , Finite elements
Journal title :
Computer Methods in Applied Mechanics and Engineering
Serial Year :
2012
Journal title :
Computer Methods in Applied Mechanics and Engineering
Record number :
1595373
Link To Document :
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