Title of article :
Analysis of microstructure development in shearbands by energy relaxation of incremental stress potentials: Large-strain theory for standard dissipative solids
Author/Authors :
Christian Miehe ، نويسنده , , Matthias Lambrecht، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
41
From page :
1
To page :
41
Abstract :
We propose a fundamentally new approach to the treatment of shearband localizations in strain softening elastic–plastic solids at nite strains based on energy minimization principles associated with microstructure developments. The point of departure is a general internal variable formulation that determines the nite inelastic response as a standard dissipative medium. Consistent with this type of inelasticity we consider an incremental variational formulation of the local constitutive response where a quasi-hyperelastic stress potential is obtained from a local constitutive minimization problem with respect to the internal variables. The existence of this variational formulation allows the de nition of the material stability of an inelastic solid based on weak convexity conditions of the incremental stress potential in analogy to treatments of nite elasticity. Furthermore, localization phenomena are interpreted as microstructure developments on multiple scales associated with non-convex incremental stress potentials in analogy to elastic phase decomposition problems. These microstructures can be resolved by the relaxation of non-convex energy functionals based on a convexi cation of the stress potential. The relaxed problem provides a well-posed formulation for a mesh-objective analysis of localizations as close as possible to the non-convex original problem. Based on an approximated rank-one convexi cation of the incremental stress potential we develop a computational two-scale procedure for a mesh-objective treatment of localization problems at nite strains. It constitutes a local minimization problem for a relaxed incremental stress potential with just one scalar variable representing the intensity of the microshearing of a rank-one laminate aligned to the shear band. This problem is su ciently robust with regard to applications to large-scale inhomogeneous deformation processes of elastic–plastic solids. The performance of the proposed energy relaxation method is demonstrated for a representative set of numerical simulations of straight and curved shear bands which report on the mesh independence of the results
Keywords :
Inelasticity , quasi-convexi cation , Material instabilities , shearband localization , variational methods , rank-one convexi cation , energyrelaxation methods
Journal title :
International Journal for Numerical Methods in Engineering
Serial Year :
2003
Journal title :
International Journal for Numerical Methods in Engineering
Record number :
424908
Link To Document :
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