We study shear banding in soft glassy materials subject to a large amplitude oscillatory shear flow (LAOS). By numerical simulations of the widely used soft glassy rheology model, supplemented by more general physical arguments, we demonstrate strong banding over an extensive range of amplitudes and frequencies of the imposed shear rate γ˙(t)=γ˙0cos(ωt), even in materials that do not permit banding as their steady state response to a steadily imposed shear flow γ˙=γ˙0=const. Highly counterintuitively, banding persists in LAOS even in the limit of zero frequency ω→0, where one might a priori have expected a homogeneous flow response in a material that does not display banding under conditions of steadily imposed shear. We explain this findin...
Yield stress fluids display a rich rheological phenomenology. Beyond the defining existence of a yie...
Suspensions of multiarm star polymers are studied as models for soft colloidal interactionsin colloi...
In this thesis, I theoretically explore shear banding of entangled linear polymer solutions and melt...
We study theoretically shear banding in soft glassy materials subject to large amplitude time-period...
Many soft materials, including microgels, dense colloidal emulsions, star polymers, dense packings o...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
We investigate theoretically shear banding in large amplitude oscillatory shear (LAOS) of polymers a...
Motivated by recent experimental studies of rheological hysteresis in soft glassy materials, we stud...
We explore theoretically the time-dependent rheological response of complex fluids to step stress, s...
This précis is aimed as a practical field guide to situations in which shear banding might be expect...
We study theoretically the dynamical process of yielding in cyclically sheared amorphous materials, ...
Yield stress fluids display a rich rheological phenomenology. Beyond the defining existence of a yie...
Suspensions of multiarm star polymers are studied as models for soft colloidal interactionsin colloi...
In this thesis, I theoretically explore shear banding of entangled linear polymer solutions and melt...
We study theoretically shear banding in soft glassy materials subject to large amplitude time-period...
Many soft materials, including microgels, dense colloidal emulsions, star polymers, dense packings o...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
Shear localization is a generic feature of flows in yield stress fluids and soft glassy materials bu...
We investigate theoretically shear banding in large amplitude oscillatory shear (LAOS) of polymers a...
Motivated by recent experimental studies of rheological hysteresis in soft glassy materials, we stud...
We explore theoretically the time-dependent rheological response of complex fluids to step stress, s...
This précis is aimed as a practical field guide to situations in which shear banding might be expect...
We study theoretically the dynamical process of yielding in cyclically sheared amorphous materials, ...
Yield stress fluids display a rich rheological phenomenology. Beyond the defining existence of a yie...
Suspensions of multiarm star polymers are studied as models for soft colloidal interactionsin colloi...
In this thesis, I theoretically explore shear banding of entangled linear polymer solutions and melt...