Sample-spanning networks of aggregated colloidal particles have a finite stiffness and deform elastically when subjected to a small shear stress. After some period of creep, these gels ultimately suffer catastrophic failure. This delayed yielding is governed by the association and dissociation dynamics of interparticle bonds and the strand structure of the gel. We derive a model which connects the kinetics of the colloids to the erosion of the strand structure and ultimately to macroscopic failure. Importantly, this model relates time-to-failure of the gel to an applied static stress. Model predictions are in quantitative agreement with experiments. It is predicted that the strand structure, characterized by its mesh size and strand coarsen...
We study the evolution of the elastic shear modulus of weakly aggregated colloidal particles during ...
Colloidal gels are soft solids comprising a viscoelastic, networked structure embedded in solvent. ...
National audienceMaterial failure is ubiquitous on length scales ranging from a few nanometers, as i...
Networks of aggregated colloidal particles are solidlike and can sustain an applied shear stress whi...
Networks of aggregated colloidal particles are solidlike and can sustain an applied shear stress whi...
Networks of aggregated colloidal particles are solidlike and can sustain an applied shear stress whi...
Colloidal gels are space-spanning networks of aggregated particles. The mechanical response of collo...
153 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this thesis, we investigat...
Colloidal gels are space-spanning networks of aggregated particles. The mechanical response of collo...
153 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this thesis, we investigat...
International audienceColloidal gels are formed through the aggregation of attractive particles, who...
Colloidal gels are widely used in applications to modify the mechanical properties of fluids; in par...
When colloidal particles in a dispersion are made attractive, they aggregate into fractal clusters w...
Attractive colloidal particles can form a disordered elastic solid or gel when quenched into a two-p...
Acknowledgements: We thank Daan Frenkel, Sylvain Patinet, Camille Scalliet, Amin Doostmohammadi, Abr...
We study the evolution of the elastic shear modulus of weakly aggregated colloidal particles during ...
Colloidal gels are soft solids comprising a viscoelastic, networked structure embedded in solvent. ...
National audienceMaterial failure is ubiquitous on length scales ranging from a few nanometers, as i...
Networks of aggregated colloidal particles are solidlike and can sustain an applied shear stress whi...
Networks of aggregated colloidal particles are solidlike and can sustain an applied shear stress whi...
Networks of aggregated colloidal particles are solidlike and can sustain an applied shear stress whi...
Colloidal gels are space-spanning networks of aggregated particles. The mechanical response of collo...
153 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this thesis, we investigat...
Colloidal gels are space-spanning networks of aggregated particles. The mechanical response of collo...
153 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.In this thesis, we investigat...
International audienceColloidal gels are formed through the aggregation of attractive particles, who...
Colloidal gels are widely used in applications to modify the mechanical properties of fluids; in par...
When colloidal particles in a dispersion are made attractive, they aggregate into fractal clusters w...
Attractive colloidal particles can form a disordered elastic solid or gel when quenched into a two-p...
Acknowledgements: We thank Daan Frenkel, Sylvain Patinet, Camille Scalliet, Amin Doostmohammadi, Abr...
We study the evolution of the elastic shear modulus of weakly aggregated colloidal particles during ...
Colloidal gels are soft solids comprising a viscoelastic, networked structure embedded in solvent. ...
National audienceMaterial failure is ubiquitous on length scales ranging from a few nanometers, as i...