A numerical algorithm for plane stress and shell elasto-plasticity is presented in this paper. The proposed strain decomposition (SD) algorithm is an elastic predictor/plastic corrector algorithm, and in the context of operator splitting, is a return mapping algorithm. However, it differs significantly from other return mapping algorithms in that only the necessary response functions are used without invoking their gradients, and the stress increment is updated only at the end of the time step. This makes the proposed SD algorithm more suitable for materials with complex yield surfaces and will guard against error accumulation during the time step. Comparative analyses of structural systems using the proposed strain decomposition (SD) algor...
Purpose - The purpose of this paper is to present an efficient return mapping algorithm for elastopl...
A fast and robust stress-integration algorithm is the key to full exploitation of advanced anisotrop...
The paper deals with structural optimization of biomorphic microcellular ceramics involving an elast...
International audienceStructural theories often consider constraints on the stresses, creating a par...
This article describes a numerical method to reconstruct the stress field starting from strain data ...
A new return method for implicit integration of linear isotropic yield criteria is presented. The ba...
An efficient return algorithm for stress update in numerical plasticity computations is presented. T...
In the present paper an algorithmic implementation of a generalized plasticity model is presented wi...
In this paper new return-mapping algorithm for the continuum large crack model is proposed for analy...
This paper proposes a modified return mapping algorithm for a series of nonlinear yield criteria. Th...
A canonical form for the representation of elastic predictor radial return plasticity algorithms is ...
An accuracy analysis of a new class of integration algorithms for finite deformation elastoplastic c...
The present paper addresses a flexible solution algorithm for associative isotropic elasto-plastic m...
This paper is concerned with unified stress update algorithms for elastoplastic and elasto-viscoplas...
In this paper, elastoplastic analyses of plane-stress and plane-strain structures are addressed. The...
Purpose - The purpose of this paper is to present an efficient return mapping algorithm for elastopl...
A fast and robust stress-integration algorithm is the key to full exploitation of advanced anisotrop...
The paper deals with structural optimization of biomorphic microcellular ceramics involving an elast...
International audienceStructural theories often consider constraints on the stresses, creating a par...
This article describes a numerical method to reconstruct the stress field starting from strain data ...
A new return method for implicit integration of linear isotropic yield criteria is presented. The ba...
An efficient return algorithm for stress update in numerical plasticity computations is presented. T...
In the present paper an algorithmic implementation of a generalized plasticity model is presented wi...
In this paper new return-mapping algorithm for the continuum large crack model is proposed for analy...
This paper proposes a modified return mapping algorithm for a series of nonlinear yield criteria. Th...
A canonical form for the representation of elastic predictor radial return plasticity algorithms is ...
An accuracy analysis of a new class of integration algorithms for finite deformation elastoplastic c...
The present paper addresses a flexible solution algorithm for associative isotropic elasto-plastic m...
This paper is concerned with unified stress update algorithms for elastoplastic and elasto-viscoplas...
In this paper, elastoplastic analyses of plane-stress and plane-strain structures are addressed. The...
Purpose - The purpose of this paper is to present an efficient return mapping algorithm for elastopl...
A fast and robust stress-integration algorithm is the key to full exploitation of advanced anisotrop...
The paper deals with structural optimization of biomorphic microcellular ceramics involving an elast...