Size of Plastic Events in Strained Amorphous Solids at Finite Temperatures
arXiv:0908.2167 · doi:10.1103/PhysRevLett.104.025501
Abstract
We address the system-size dependence of typical plastic flow events when an amorphous solid is put under a fixed external strain rate at a finite temperature. For system sizes that are accessible to numerical simulations at reasonable strain rates and at low temperatures the magnitude of plastic events grows with the system size. We explain however that this must be a finite size effect; for larger systems there exist two cross-over length-scales and , the first determined by the elastic time-scale and the second by the thermal energy-scale. For system of linear size larger than any of these scales the magnitude of plastic events must be bounded. For systems of size there must exist uncorrelated plastic events which occur simultaneously. We present a scaling theory that culminates with the dependence of the cross-over scales on temperature and strain rate. Finally we relate these findings to the temperature and size dependence of the stress fluctuations. We comment on the importance of these considerations for theories of elasto-plasticity.
5 pages, 4 figures
References in corpus (2)
Cited by in corpus (29)
- Deformation and Failure of Amorphous Solidlike Materials
- Statistical Physics of the Yielding Transition in Amorphous Solids
- Microscopic Mechanism of Shear Bands in Amorphous Solids
- Avalanches in Strained Amorphous Solids: Does Inertia Destroy Critical Behavior?
- Long-range strain correlations in sheared colloidal glasses
- Non-local rheology in dense granular flows -- Revisiting the concept of fluidity
- The effect of inertia on sheared disordered solids: Critical scaling of avalanches in two and three dimensions
- Formation and growth of shear bands in glasses: existence of an underlying directed percolation transition
- Statistical Physics of Elasto-Plastic Steady States in Amorphous Solids: Finite Temperatures and Strain Rates
- Absence of Marginal Stability in a Structural Glass
- The Yield-Strain in Shear Banding Amorphous Solids
- Athermal Nonlinear Elastic Constants of Amorphous Solids
- Stochastic Approach to Plasticity and Yield in Amorphous Solids
- Contact Changes near Jamming
- Deformation and flow of amorphous solids: An updated review of mesoscale elastoplastic models
- Plastic deformations in crystal, polycrystal, and glass in binary mixtures under shear: Collective yielding
- Low-temperature anomalies of a vapor deposited glass
- Robustness of avalanche dynamics in sheared amorphous solids as probed by transverse diffusion
- Plasticity-Induced Anisotropy in Amorphous Solids: the Bauschinger Effect
- Diffusion in mesoscopic lattice models of amorphous plasticity
- The yielding of amorphous solids at finite temperatures
- Contact Changes of Sheared Systems: Scaling, Correlations, and Mechanisms
- Non-Affine Displacements and the Non-Linear Response of a Strained Amorphous Solid
- Characterizing the Nature of the Yielding Transition
- The role of microscopic friction in statistics and scaling laws of avalanches
- Isomorph invariance of dynamics of sheared glassy systems
- Nonequilibrium plastic roughening of metallic glasses yields self-affine topographies with strain-rate and temperature-dependent scaling exponents
- Time Scales in the Theory of Elasto-Plasticity of Amorphous Solids
- Dynamic phase diagram of plastically deformed amorphous solids at finite temperature