Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are used to investigate a glass-forming binary Yukawa fluid under shear. The transition from the elastic response to plastic flow is elucidated by studying the stress relaxation after switching off the shear. We find a slow stress relaxation starting from states in the elastic regime and a fast one starting from states in the plastic-flow regime. We show that these relaxation patterns are related to a different distribution of local microscopic stresses in both cases
We have investigated strain-accelerated dynamics of soft glasses theoretically and experimentally.Me...
An algorithm is introduced for the molecular simulation of constant-pressure plastic deformation in ...
Abstract. We examine the microscopic dynamics of supercooled liquids under shear by performing exten...
Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are use...
We report the results of molecular dynamics simulations of stress relaxation tests in athermal visco...
We compute the rheological properties of inelastic hard spheres in steady shear flow for general she...
We consider a model dense colloidal dispersion at the glass transition, and investigate the connecti...
We present results from computer simulation and mode-coupling theory of the glass transition for the...
Large scale molecular dynamics simulations are performed to study the steady state yielding dynamics...
International audienceWe investigate by means of molecular dynamics simulation a coarse-grained poly...
We present results from microscopic mode coupling theory generalized to colloidal dispersions under ...
We study the nonlinear rheology of a glass-forming binary mixture under the reversal of shear flow u...
We present accurate molecular dynamics calculations of the shear stress relaxation modulus of a simp...
The stress vs strain curves in dense colloidal dispersions under start up shear flow are investigate...
Suspensions of multiarm star polymers are studied as models for soft colloidal interactionsin colloi...
We have investigated strain-accelerated dynamics of soft glasses theoretically and experimentally.Me...
An algorithm is introduced for the molecular simulation of constant-pressure plastic deformation in ...
Abstract. We examine the microscopic dynamics of supercooled liquids under shear by performing exten...
Molecular-dynamics computer simulations in conjunction with Lees-Edwards boundary conditions are use...
We report the results of molecular dynamics simulations of stress relaxation tests in athermal visco...
We compute the rheological properties of inelastic hard spheres in steady shear flow for general she...
We consider a model dense colloidal dispersion at the glass transition, and investigate the connecti...
We present results from computer simulation and mode-coupling theory of the glass transition for the...
Large scale molecular dynamics simulations are performed to study the steady state yielding dynamics...
International audienceWe investigate by means of molecular dynamics simulation a coarse-grained poly...
We present results from microscopic mode coupling theory generalized to colloidal dispersions under ...
We study the nonlinear rheology of a glass-forming binary mixture under the reversal of shear flow u...
We present accurate molecular dynamics calculations of the shear stress relaxation modulus of a simp...
The stress vs strain curves in dense colloidal dispersions under start up shear flow are investigate...
Suspensions of multiarm star polymers are studied as models for soft colloidal interactionsin colloi...
We have investigated strain-accelerated dynamics of soft glasses theoretically and experimentally.Me...
An algorithm is introduced for the molecular simulation of constant-pressure plastic deformation in ...
Abstract. We examine the microscopic dynamics of supercooled liquids under shear by performing exten...