Asymmetric damage avalanche shape in quasi-brittle materials and sub-avalanches (aftershocks) clusters
arXiv:2002.07432 · doi:10.1103/PhysRevLett.125.105502
Abstract
Crackling dynamics is characterized by a release of incoming energy through intermittent avalanches. The shape, i.e. the internal temporal structure of these avalanches, gives insightful information about the physical processes involved. It was experimentally shown recently that progressive damage towards compressive failure of quasi-brittle materials can be mapped onto the universality class of interface depinning when considering scaling relationships between the global characteristics of the microcracking avalanches. Here we show, for three concrete materials and from a detailed analysis of the acoustic emission waveforms generated by microcracking events, that the shape of these damage avalanches is strongly asymmetric, characterized by a very slow decay. This remarkable asymmetry, at odds with mean-field depinning predictions, could be explained, in these quasi-brittle materials, by retardation effects induced by enhanced viscoelastic processes within a fracture process zone generated by the damage avalanche as it progresses. It is associated with clusters of sub-avalanches, or aftershocks, within the main avalanche.
References in corpus (8)
- Scaling description of the yielding transition in soft amorphous solids at zero temperature
- Exactly solvable model of avalanches dynamics for Barkhausen crackling noise
- Local and global avalanches in a 2D sheared granular medium
- Avalanche shape and exponents beyond mean-field theory
- Compressive failure as a critical transition: Experimental evidences and mapping onto the universality class of depinning
- Experimental evidence of accelerated seismic release without critical failure in acoustic emissions of compressed nanoporous materials
- Fault orientation in damage failure under compression
- Seismicity in sheared granular matter
Cited by in corpus (4)
- Dislocation Avalanches: Earthquakes on the Micron Scale
- Inference in non-equilibrium systems from incomplete information: the case of linear systems and its pitfalls
- Quasistatic kinetic avalanches and self-organized criticality in deviatorically loaded granular media
- Universal Excursion and Bridge shapes in ABBM/CIR/Bessel processes