The paper deals with the numerical investigation and implementation of the two-surface plasticity model (or bounding surface model). This plasticity theory allows to describe the deformation behavior under large strain cyclic plasticity and the material stress-strain responses at small-scale re-yielding after large pre-straining. A novel strategy to model the isotropic hardening stagnation is developed within a fully implicit integration scheme in order to speed up the computation and to improve the material description
In numerical analysis the failure of engineering materials is controlled through specifying yield en...
In numerical analysis the failure of engineering materials is controlled through specifying yield en...
This paper presents a method for implicit stress integration of the Drucker-Prager material model...
The paper deals with the numerical investigation and implementation of the two-surface plasticity mo...
Abstract A practical two-surface plasticity model based on classical Dafalias/Popov and Krieg concep...
A practical two-surface plasticity model based on classical Dafalias/Popov and Krieg concepts was de...
Abstract The present work relates to the development of computational material models for sheet meta...
In recent years, a number of constitutive models have been proposed to describe mathematically the m...
Yield and plastic potential surfaces are often affected by problems related to convexity. One such p...
Two integration algorithms, namely the implicit return mapping and explicit sub-stepping schemes, ar...
Most cyclic plasticity models used in ratcheting simulations employ the rate-independent elastoplast...
A unified plastic modulus parameter for the bounding surface plasticity model is introduced in order...
The theoretical basis and numerical implementation of a plasticity model suitable for finite strains...
A fully implicit stress integration algorithm is developed for the distortional hardening model, nam...
A new combined isotropic-kinematic hardening rule is proposed based on the concept of the generalize...
In numerical analysis the failure of engineering materials is controlled through specifying yield en...
In numerical analysis the failure of engineering materials is controlled through specifying yield en...
This paper presents a method for implicit stress integration of the Drucker-Prager material model...
The paper deals with the numerical investigation and implementation of the two-surface plasticity mo...
Abstract A practical two-surface plasticity model based on classical Dafalias/Popov and Krieg concep...
A practical two-surface plasticity model based on classical Dafalias/Popov and Krieg concepts was de...
Abstract The present work relates to the development of computational material models for sheet meta...
In recent years, a number of constitutive models have been proposed to describe mathematically the m...
Yield and plastic potential surfaces are often affected by problems related to convexity. One such p...
Two integration algorithms, namely the implicit return mapping and explicit sub-stepping schemes, ar...
Most cyclic plasticity models used in ratcheting simulations employ the rate-independent elastoplast...
A unified plastic modulus parameter for the bounding surface plasticity model is introduced in order...
The theoretical basis and numerical implementation of a plasticity model suitable for finite strains...
A fully implicit stress integration algorithm is developed for the distortional hardening model, nam...
A new combined isotropic-kinematic hardening rule is proposed based on the concept of the generalize...
In numerical analysis the failure of engineering materials is controlled through specifying yield en...
In numerical analysis the failure of engineering materials is controlled through specifying yield en...
This paper presents a method for implicit stress integration of the Drucker-Prager material model...