Recently, rheological hysteresis has been studied systematically in a wide range of complex fluids combining global rheology and time-resolved velocimetry. In this paper we present an analysis of the roles of the three most fundamental mechanisms in simple-yield-stress fluids: structure dynamics, viscoelastic response, and spatial flow heterogeneities, i.e., time-dependent shear bands. Dynamical hysteresis simulations are done analogously to rheological ramp-up and -down experiments on a coupled model which incorporates viscoelasticity and time-dependent structure evolution. Based on experimental data, a coupling between hysteresis measured from the local velocity profiles and that measured from the global flow curve has been suggested. Acc...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
Recently, rheological hysteresis has been studied systematically in a wide range of complex fluids c...
Motivated by recent experimental studies of rheological hysteresis in soft glassy materials, we stud...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
International audienceMotivated by recent experimental studies of rheological hysteresis in soft gla...
Rheological characterization of complex fluids subjected to cyclic shear-rate sweep often exhibits h...
We explore theoretically the time-dependent rheological response of complex fluids to step stress, s...
The fluidization of complex fluids is studied in the context of a Maxwell viscoelastic structural fl...
In this paper, hysteresis of magnetorheological (MR) fluids is identified from experimental tests fo...
We study shear banding flows in models of wormlike micelles or polymer solutions, and explore the ef...
4 pages, 4 figuresInternational audienceWe report a large set of experimental data which demonstrate...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
Recently, rheological hysteresis has been studied systematically in a wide range of complex fluids c...
Motivated by recent experimental studies of rheological hysteresis in soft glassy materials, we stud...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
International audienceMotivated by recent experimental studies of rheological hysteresis in soft gla...
Rheological characterization of complex fluids subjected to cyclic shear-rate sweep often exhibits h...
We explore theoretically the time-dependent rheological response of complex fluids to step stress, s...
The fluidization of complex fluids is studied in the context of a Maxwell viscoelastic structural fl...
In this paper, hysteresis of magnetorheological (MR) fluids is identified from experimental tests fo...
We study shear banding flows in models of wormlike micelles or polymer solutions, and explore the ef...
4 pages, 4 figuresInternational audienceWe report a large set of experimental data which demonstrate...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...
We study the dynamics of shear-band formation and evolution using a simple rheological model. The de...