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Homogenization of layered materials with rigid components in single-slip finite crystal plasticity

Christowiak, Fabian and Kreisbeck, Carolin (2017) Homogenization of layered materials with rigid components in single-slip finite crystal plasticity. Calculus of Variations and Partial Differential Equations 56 (3).

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Other URL: http://doi.org/10.1007/s00526-017-1171-3


Abstract

We determine the effective behavior of a class of composites in finite-strain crystal plasticity, based on a variational model for materials made of fine parallel layers of two types. While one component is completely rigid in the sense that it admits only local rotations, the other one is softer featuring a single active slip system with linear self-hardening. As a main result, we obtain ...

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Item type:Article
Date:2017
Institutions:Mathematics > Prof. Dr. Georg Dolzmann
Identification Number:
ValueType
10.1007/s00526-017-1171-3DOI
Keywords:ENERGY MINIMIZATION; ELASTICITY; MICROSTRUCTURES; CONVERGENCE; F=(FFP)-F-E; CONSTRAINTS; DERIVATION; LIMIT;
Dewey Decimal Classification:500 Science > 510 Mathematics
Status:Published
Refereed:Yes, this version has been refereed
Created at the University of Regensburg:Yes
Item ID:38937
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