cited By 8International audiencePhysical ageing of amorphous polymers well below their glass transition temperature leads to changes in almost all physical properties. Of particular interest is the increase in yield stress and post-yield strain softening that accompanies ageing of these materials. Moreover, at larger strain polymers seem to rejuvenate, i.e. aged and non-aged samples have identical stressstrain responses. Also, plastically deforming an aged sample seems to rejuvenate the polymer. In this work we use molecular dynamic simulations with a detailed force field suitable for macromolecular ensembles to simulate and understand the effects of ageing on the mechanical response of these materials. We show that within the timescales of...
Mol.-dynamics simulation is used to explore the influence of thermal and mech. history of typical gl...
Mol. dynamics (MD) simulations of the low-mol.-wt. glass-former, isopropylbenzene (iPB), atactic-pol...
Using molecular dynamics simulations, we investigate the effect of uniaxial elastostatic compression...
Physical aging in polymer glasses is a nonequilibrium phenomenon characterized by spontaneous proces...
Microscopic dynamics and mechanical response of polymer glasses are studied in four projects using m...
A brief review of molecular simulations of physical ageing in structural glasses and its influence o...
Non-equilibrium dynamics in the glassy state lead to interesting aging and memory effects. In this d...
We use molecular-dynamics (MD) simulations and an original lateral contact experiment to explore the...
\u3cp\u3eThis study focuses on the prediction of long-term failure of glassy polymers under static o...
The continuous development of constitutive equations for the finite strain deformationof glassy poly...
The physical aging concept is generally used to explain the typical behavior of amorphous glassy mat...
This study focuses on the prediction of long-term failure of glassy polymers under static or cyclic ...
We use molecular-dynamics computer simulations to explore the influence of thermal and mechanical hi...
Mol.-dynamics simulation is used to explore the influence of thermal and mech. history of typical gl...
Mol. dynamics (MD) simulations of the low-mol.-wt. glass-former, isopropylbenzene (iPB), atactic-pol...
Using molecular dynamics simulations, we investigate the effect of uniaxial elastostatic compression...
Physical aging in polymer glasses is a nonequilibrium phenomenon characterized by spontaneous proces...
Microscopic dynamics and mechanical response of polymer glasses are studied in four projects using m...
A brief review of molecular simulations of physical ageing in structural glasses and its influence o...
Non-equilibrium dynamics in the glassy state lead to interesting aging and memory effects. In this d...
We use molecular-dynamics (MD) simulations and an original lateral contact experiment to explore the...
\u3cp\u3eThis study focuses on the prediction of long-term failure of glassy polymers under static o...
The continuous development of constitutive equations for the finite strain deformationof glassy poly...
The physical aging concept is generally used to explain the typical behavior of amorphous glassy mat...
This study focuses on the prediction of long-term failure of glassy polymers under static or cyclic ...
We use molecular-dynamics computer simulations to explore the influence of thermal and mechanical hi...
Mol.-dynamics simulation is used to explore the influence of thermal and mech. history of typical gl...
Mol. dynamics (MD) simulations of the low-mol.-wt. glass-former, isopropylbenzene (iPB), atactic-pol...
Using molecular dynamics simulations, we investigate the effect of uniaxial elastostatic compression...