Yield stress fluids (YSFs) display a dual nature highlighted by the existence of a critical stress σ_{y} such that YSFs are solid for stresses σ imposed below σ_{y}, whereas they flow like liquids for σ>σ_{y}. Under an applied shear rate γ[over ̇], the solid-to-liquid transition is associated with a complex spatiotemporal scenario that depends on the microscopic details of the system, on the boundary conditions, and on the system size. Still, the general phenomenology reported in the literature boils down to a simple sequence that can be divided into a short-time response characterized by the so-called "stress overshoot," followed by stress relaxation towards a steady state. Such relaxation can be either (1) long-lasting, which usually i...
Large scale molecular dynamics simulations are performed to study the steady state yielding dynamics...
By using fluid-kinetic simulations of confined and concentrated emulsion droplets, we investigate th...
At the transition from a static to a dynamic deformation regime of a shear band in bulk metallic gla...
Yield stress fluids (YSFs) display a dual nature highlighted by the existence of a critical stress σ...
Soft glassy materials such as mayonnaise, wet clays, or dense microgels display a solid-to-liquid tr...
Soft Glassy Materials (SGM) consist in dense amorphous assemblies of colloidal par- ticles of multip...
Dense emulsions, colloidal gels, microgels, and foams all display a solidlike behavior at rest chara...
We show that, above a critical stress, typical yield stress fluids (gels and clay suspensions) and s...
4 pages, 4 figuresInternational audienceWe report a large set of experimental data which demonstrate...
Many soft materials, including microgels, dense colloidal emulsions, star polymers, dense packings o...
We study shear banding in soft glassy materials subject to a large amplitude oscillatory shear flow ...
Yield stress fluids display complex dynamics, in particular when driveninto the transient regime bet...
We explore theoretically the time-dependent rheological response of complex fluids to step stress, s...
Large scale molecular dynamics simulations are performed to study the steady state yielding dynamics...
By using fluid-kinetic simulations of confined and concentrated emulsion droplets, we investigate th...
At the transition from a static to a dynamic deformation regime of a shear band in bulk metallic gla...
Yield stress fluids (YSFs) display a dual nature highlighted by the existence of a critical stress σ...
Soft glassy materials such as mayonnaise, wet clays, or dense microgels display a solid-to-liquid tr...
Soft Glassy Materials (SGM) consist in dense amorphous assemblies of colloidal par- ticles of multip...
Dense emulsions, colloidal gels, microgels, and foams all display a solidlike behavior at rest chara...
We show that, above a critical stress, typical yield stress fluids (gels and clay suspensions) and s...
4 pages, 4 figuresInternational audienceWe report a large set of experimental data which demonstrate...
Many soft materials, including microgels, dense colloidal emulsions, star polymers, dense packings o...
We study shear banding in soft glassy materials subject to a large amplitude oscillatory shear flow ...
Yield stress fluids display complex dynamics, in particular when driveninto the transient regime bet...
We explore theoretically the time-dependent rheological response of complex fluids to step stress, s...
Large scale molecular dynamics simulations are performed to study the steady state yielding dynamics...
By using fluid-kinetic simulations of confined and concentrated emulsion droplets, we investigate th...
At the transition from a static to a dynamic deformation regime of a shear band in bulk metallic gla...