The atomic theory of elasticity of amorphous solids, based on the nonaffine response formalism, is extended into the nonlinear stress-strain regime by coupling with the underlying irreversible many-body dynamics. The latter is implemented in compact analytical form using a qualitative method for the many-body dynamics. The resulting nonlinear stress-strain (constitutive) relation is very simple, with few fitting parameters, yet contains all the microscopic physics. The theory is successfully tested against experimental data on metallic glasses, and it is able to reproduce the ubiquitous feature of stress-strain overshoot upon varying temperature and shear rate. A clear atomic-level interpretation is provided for the stress overshoot, in ter...
Granular jammed packings represent not only important systems per se (with many applications rangin...
An inherent correlation between the strain rate sensitivity and a relaxation of metallic glasses (MG...
Atomic rearrangements induced by shear stress are fundamental for understanding deformation mechanis...
Due to the structurally disordered arrangement of atoms and deviation from thermodynamic equilibrium...
Due to the structurally disordered arrangement of atoms and deviation from thermodynamic equilibrium...
Colloidal hard-sphere glasses represent a useful model system to investigate the physics of amorphou...
Unlike crystalline alloys, metallic glasses (MGs) do not possess distinctive defects but exhibit a h...
We present a mathematical description of amorphous solid deformation and plasticity by extending the...
The response to different stress amplitudes at temperatures below the glass transition temperature i...
Using molecular dynamics simulations, we study the transient response of a binary Lennard-Jones glas...
Using molecular dynamics simulations, we study the transient response of a binary Lennard-Jones glas...
Strain localization is an important deformation mode for many disordered materials, particularly for...
Due to the structurally disordered arrangement of atoms and deviation from thermodynamic equilibrium...
Strain localization is an important deformation mode for many disordered materials, particularly for...
Using molecular dynamics simulations, we study the transient response of a binary Lennard-Jones glas...
Granular jammed packings represent not only important systems per se (with many applications rangin...
An inherent correlation between the strain rate sensitivity and a relaxation of metallic glasses (MG...
Atomic rearrangements induced by shear stress are fundamental for understanding deformation mechanis...
Due to the structurally disordered arrangement of atoms and deviation from thermodynamic equilibrium...
Due to the structurally disordered arrangement of atoms and deviation from thermodynamic equilibrium...
Colloidal hard-sphere glasses represent a useful model system to investigate the physics of amorphou...
Unlike crystalline alloys, metallic glasses (MGs) do not possess distinctive defects but exhibit a h...
We present a mathematical description of amorphous solid deformation and plasticity by extending the...
The response to different stress amplitudes at temperatures below the glass transition temperature i...
Using molecular dynamics simulations, we study the transient response of a binary Lennard-Jones glas...
Using molecular dynamics simulations, we study the transient response of a binary Lennard-Jones glas...
Strain localization is an important deformation mode for many disordered materials, particularly for...
Due to the structurally disordered arrangement of atoms and deviation from thermodynamic equilibrium...
Strain localization is an important deformation mode for many disordered materials, particularly for...
Using molecular dynamics simulations, we study the transient response of a binary Lennard-Jones glas...
Granular jammed packings represent not only important systems per se (with many applications rangin...
An inherent correlation between the strain rate sensitivity and a relaxation of metallic glasses (MG...
Atomic rearrangements induced by shear stress are fundamental for understanding deformation mechanis...