International audienceA recent study by Hassan et al. [Hassan, T., Taleb, L., Krishna, S., 2008. Influences of nonproportional loading paths on ratcheting responses and simulations by two recent cyclic plasticity models. Int. J. Plasticity, 24, 1863–1889.] demonstrated that some of the nonproportional ratcheting responses under stress-controlled loading histories cannot be simulated reasonably by two recent cyclic plasticity models. Two major drawbacks of the models identified were: (i) the stainless steel 304 demonstrated cyclic hardening under strain-controlled loading whereas cyclic softening under stress-controlled loading, which depends on the strain-range and which the existing models cannot describe; (ii) the change in biaxial ratche...
In this study, a two surface plasticity model was developed and used to simulate the uniaxial ratche...
The second part of the study presents development of the Dirac delta functions framework to modellin...
A two-surface plasticity theory is used to predict ratcheting strain under multiaxial loading. A kin...
International audienceNumerical simulations of 304 austenitic stainless steel (SS304) cyclic and rat...
International audienceNumerical simulations of 304 austenitic stainless steel (SS304) cyclic and rat...
Cyclic plastic deformation characteristics of 304LN stainless steel material have been studied with ...
Cyclic plastic deformation phenomena include the Bauschinger effect, cyclic hardening/softening, str...
Most cyclic plasticity models used in ratcheting simulations employ the rate-independent elastoplast...
The material constants of the new plasticity model proposed in the first part of the paper can be di...
In this work, we propose a revised Chaboche model based on a crystal plasticity multiscale approach....
In order to capture the stress-strain response of metallic materials under cyclic loading, it is nec...
In this work, we propose a revised Chaboche model based on a crystal plasticity multiscale approach....
The path-dependent and nonlinear behavior of metallic materials subjected to cyclic loading is model...
The second part of the study presents development of the Dirac delta functions framework to modellin...
The second part of the study presents development of the Dirac delta functions framework to modellin...
In this study, a two surface plasticity model was developed and used to simulate the uniaxial ratche...
The second part of the study presents development of the Dirac delta functions framework to modellin...
A two-surface plasticity theory is used to predict ratcheting strain under multiaxial loading. A kin...
International audienceNumerical simulations of 304 austenitic stainless steel (SS304) cyclic and rat...
International audienceNumerical simulations of 304 austenitic stainless steel (SS304) cyclic and rat...
Cyclic plastic deformation characteristics of 304LN stainless steel material have been studied with ...
Cyclic plastic deformation phenomena include the Bauschinger effect, cyclic hardening/softening, str...
Most cyclic plasticity models used in ratcheting simulations employ the rate-independent elastoplast...
The material constants of the new plasticity model proposed in the first part of the paper can be di...
In this work, we propose a revised Chaboche model based on a crystal plasticity multiscale approach....
In order to capture the stress-strain response of metallic materials under cyclic loading, it is nec...
In this work, we propose a revised Chaboche model based on a crystal plasticity multiscale approach....
The path-dependent and nonlinear behavior of metallic materials subjected to cyclic loading is model...
The second part of the study presents development of the Dirac delta functions framework to modellin...
The second part of the study presents development of the Dirac delta functions framework to modellin...
In this study, a two surface plasticity model was developed and used to simulate the uniaxial ratche...
The second part of the study presents development of the Dirac delta functions framework to modellin...
A two-surface plasticity theory is used to predict ratcheting strain under multiaxial loading. A kin...