A bounding-surface hypoplasticity model is modified to incorporate the basic premises of critical-state soil mechanics and cover both dense and loose sand behavior. The modification consists of rendering the phase-transformation line a function of the state parameter, which measures the difference between the current and critical void ratios at the same value of p, such that when the state parameter is zero, the phase-transformation line becomes identical to the critical-state line in q-p space. As a result the dilatancy depends on the state in a way that yields a zero value at critical state. This dependence allows a realistic modelling of the response of a sand in either loose or dense state, or in the transition from one state to another...
A state-dependent elasto-plastic constitutive model for both saturated and unsaturated soils is pres...
Three constitutive models constructed within the spirit of critical state soil mechanics are summari...
constitutive modelling, bounding surface plasticity, sands The accurate simulation of complex dynami...
A comprehensive bounding surface sand model has been formulated within a critical-state framework. T...
The effort to model sand behavior within the framework of critical-state soil mechanics would benefi...
Dilatancy is often considered a unique function of the stress ratio eta = q/p', in terms of the tria...
A modified bounding surface plasticity model developed within the critical state soil mechanics fram...
A modified bounding surface hypoplasticity model is developed to capture distinct dilatancy behavior...
Experimental data have demonstrated that a strong relationship exists between the state parameter an...
Traditional stress dilatancy theory had been extensively used in constitutive modeling, and its appl...
A plasticity constitutive framework for modeling inherently anisotropic sand behavior is presented w...
This paper presents a state-dependent constitutive model for sand formulated within the critical-sta...
A series of bender element tests and drained and undrained monotonic triaxial compression and extens...
Dilatancy is an essential sand response. Experimental and microstructural investigations have shown ...
It is a challenge to suggest a constitutive model for describing the stress-strain behavior of sand-...
A state-dependent elasto-plastic constitutive model for both saturated and unsaturated soils is pres...
Three constitutive models constructed within the spirit of critical state soil mechanics are summari...
constitutive modelling, bounding surface plasticity, sands The accurate simulation of complex dynami...
A comprehensive bounding surface sand model has been formulated within a critical-state framework. T...
The effort to model sand behavior within the framework of critical-state soil mechanics would benefi...
Dilatancy is often considered a unique function of the stress ratio eta = q/p', in terms of the tria...
A modified bounding surface plasticity model developed within the critical state soil mechanics fram...
A modified bounding surface hypoplasticity model is developed to capture distinct dilatancy behavior...
Experimental data have demonstrated that a strong relationship exists between the state parameter an...
Traditional stress dilatancy theory had been extensively used in constitutive modeling, and its appl...
A plasticity constitutive framework for modeling inherently anisotropic sand behavior is presented w...
This paper presents a state-dependent constitutive model for sand formulated within the critical-sta...
A series of bender element tests and drained and undrained monotonic triaxial compression and extens...
Dilatancy is an essential sand response. Experimental and microstructural investigations have shown ...
It is a challenge to suggest a constitutive model for describing the stress-strain behavior of sand-...
A state-dependent elasto-plastic constitutive model for both saturated and unsaturated soils is pres...
Three constitutive models constructed within the spirit of critical state soil mechanics are summari...
constitutive modelling, bounding surface plasticity, sands The accurate simulation of complex dynami...