Spontaneous formation of permanent shear bands in a mesoscopic model of flowing disordered matter
arXiv:1111.0581 · doi:10.1039/C2SM07090A
Abstract
This study proposes a coherent scenario of the formation of permanent shear bands in the flow of yield stress materials. It is a well accepted point of view that flow in disordered media is occurring via local plastic events, corresponding to small size rearrangements, that yield a long range stress redistribution over the system. Within a minimalistic mesoscopic model that incorporates these local dynamics, we study the spatial organisation of the local plastic events. The most important parameter in this study is the typical restructuring time needed to regain the original structure after a local rearrangement. In agreement with a recent mean field study [Coussot \textit{et al., Eur. Phys. J. E}, 2010, \textbf{33}, 183] we observe a spontaneous formation of permanent shear bands, when this restructuring time is large compared to the typical stress release time in a rearrangement. The bands consist of a large number of plastic events within a solid region that remains elastic. This heterogeneous flow behaviour is different in nature from the transient dynamical heterogeneities that one observes in the small shear rate limit in flow without shear-banding [Martens \textit{et al., Phys. Rev. Lett.}, 2011, \textbf{106}, 156001]. We analyse in detail the dependence of the shear bands on system size, shear rate and restructuring time. Further we rationalise the scenario within a mean field version of the spatial model, that produces a non monotonous flow curve for large restructuring times. This explains the instability of the homogeneous flow below a critical shear rate, that corresponds to the minimum of the curve. Our study therefore strongly supports the idea that the characteristic time scales involved in the local dynamics are at the physical origin of permanent shear bands.
10 pages, 9 figures
References in corpus (5)
- Plastic Response of a 2D Lennard-Jones amorphous solid: Detailed analysis of the local rearrangements at very slow strain-rate
- Yielding and flow in adhesive and non-adhesive concentrated emulsions
- Strain localization in a shear transformation zone model for amorphous solids
- Shear banding, aging and noise dynamics in soft glassy materials
- Transition from a simple yield stress fluid to a thixotropic material
Cited by in corpus (54)
- Yield Stress Materials in Soft Condensed Matter
- Rheological hysteresis in soft glassy materials
- On the density of shear transformation zones in amorphous solids
- Criteria for shear banding in time-dependent flows of complex fluids
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- Universality of Avalanche Exponents in Plastic Deformation of Disordered Solids
- Formation and growth of shear bands in glasses: existence of an underlying directed percolation transition
- Time dependent elastic response to a local shear transformation in amorphous solids
- Strain localisation above the yielding point in cyclically deformed glasses
- Impact of attractive interactions on the rheology of dense athermal particles
- On the relevance of disorder in athermal amorphous materials under shear
- Rejuvenation and Shear-Banding in model amorphous solids
- Criticality in elastoplastic models of amorphous solids with stress-dependent yielding rates
- Elasticity, Facilitation and Dynamic Heterogeneity in Glass-Forming liquids
- Brittle yielding of amorphous solids at finite shear rates
- Spatial cooperativity in microchannel flows of soft jammed materials: A mesoscopic approach
- From depinning transition to plastic yielding of amorphous media: A soft modes perspective
- Rheology of athermal amorphous solids: Revisiting simplified scenarios and the concept of mechanical noise temperature
- Ductile-to-brittle transition and yielding in soft amorphous materials: perspectives and open questions
- Experimental Investigation of Plastic Deformations Before Granular Avalanche
- Heterogeneous dynamics during yielding of glasses: effect of aging
- Deformation and flow of amorphous solids: An updated review of mesoscale elastoplastic models
- Avalanches, loading and finite size effects in 2D amorphous plasticity: results from a finite element model
- Elastic consequences of a single plastic event: towards a realistic account of structural disorder and shear wave propagation in models of flowing amorphous solids
- Emergence and persistence of flow inhomogeneities in the yielding and fluidization of dense soft solids
- A mesoscopic model for the rheology of soft amorphous solids, with application to mi- crochannel flows
- Nontrivial rheological exponents in sheared yield stress fluids
- Avalanche size distributions in mean field plastic yielding models
- A computational study of transient shear banding in soft jammed solids
- Athermal rheology of weakly attractive soft particles
- Metastability at the Yield-Stress Transition in Soft Glasses
- Continuum modelling of shear start-up in soft glassy materials
- The Emergence and Role of Dipolar Dislocation Patterns in Discrete and Continuum Formulations of Plasticity
- Shearing small glass-forming systems: a potential energy landscape perspective
- Properties of the density of shear transformations in driven amorphous solids
- Plastic flow and localization in an amorphous material: experimental interpretation of the fluidity
- The non-monotonic shear-thinning flow of two strongly cohesive concentrated suspensions
- Shearing a glass and the role of pin-delay in models of interface depinning
- Theoretical approaches to the steady-state statistical physics of interacting dissipative units
- Avalanches and Structural Change in Cyclically Sheared Silica Glass
- Plastic response and correlations in athermally sheared amorphous solids
- Yielding is an absorbing phase transition with vanishing critical fluctuations
- Spontaneous instabilities and stick-slip motion in a generalized Hebraud-Lequeux model
- Criticality at finite strain rate in fluidized soft glassy materials
- Discontinuous shear-thinning in adhesive dispersions
- Structure in Sheared Supercooled Liquids: Dynamical Rearrangements of an Effective System of Icosahedra
- Discontinuous Thinning in Active Microrheology of Soft Complex Matter
- Thermally activated intermittent flow in amorphous solids
- Yielding of a Model Glassformer: an Interpretation with an Effective System of Icosahedra
- Steady inhomogeneous shear flows as mechanical phase transitions
- Discontinuous yielding transition of amorphous materials with low bulk modulus
- Volume-shear coupling in a mesoscopic model of amorphous materials
- Yielding versus random organization: convex absorbing transitions in soft matter
- Giant fluctuations in the flow of fluidised soft glassy materials: an elasto-plastic modelling approach