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Finite element implementation and numerical issues of strain gradient plasticity with application to metal matrix composites
Authors:Per Fredriksson  Peter Gudmundson  Lars Pilgaard Mikkelsen
Institution:1. Department of Solid Mechanics, KTH Engineering Sciences, Royal Institute of Technology, Osquars Backe 1, SE-100 44 Stockholm, Sweden;2. Materials Research Department, Risø National Laboratory for Sustainable Energy, Technical University of Denmark, DK-4000 Roskilde, Denmark
Abstract:A framework of finite element equations for strain gradient plasticity is presented. The theoretical framework requires plastic strain degrees of freedom in addition to displacements and a plane strain version is implemented into a commercial finite element code. A couple of different elements of quadrilateral type are examined and a few numerical issues are addressed related to these elements as well as to strain gradient plasticity theories in general. Numerical results are presented for an idealized cell model of a metal matrix composite under shear loading. It is shown that strengthening due to fiber size is captured but strengthening due to fiber shape is not. A few modelling aspects of this problem are discussed as well. An analytic solution is also presented which illustrates similarities to other theories.
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