Publication | Open Access
Driving Rate Dependence of Avalanche Statistics and Shapes at the Yielding Transition
154
Citations
50
References
2016
Year
EngineeringMechanical EngineeringStress Time SeriesRate DependenceAvalanche StatisticsMechanicsNumerical SimulationRheologyPlastic AvalanchesPhysicsStrain LocalizationSolid MechanicsProbability TheoryPlasticityMechanical DeformationIndividual AvalanchesDynamic Constitutive BehaviorApplied PhysicsContinuum ModelingMechanics Of MaterialsSnow Avalanche
We study stress time series caused by plastic avalanches in athermally sheared disordered materials. Using particle-based simulations and a mesoscopic elastoplastic model, we analyze system size and shear-rate dependence of the stress-drop duration and size distributions together with their average temporal shape. We find critical exponents different from mean-field predictions, and a clear asymmetry for individual avalanches. We probe scaling relations for the rate dependency of the dynamics and we report a crossover towards mean-field results for strong driving.
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