arXiv · 2409.07621
Self-organization and memory in a cyclically driven elasto-plastic model of an amorphous solid
Abstract
The mechanical behavior of disordered materials such as dense suspensions, glasses or granular materials depends on their thermal and mechanical past. Here we report the memory behavior of a quenched mesoscopic elasto-plastic (QMEP) model. After prior oscillatory training, a simple read-out protocol gives access to both the training protocol's amplitude and the last shear direction. The memory of direction emerges from the development of a mechanical polarization during training. The analysis of sample-to-sample fluctuations gives direct access to the irreversibility transition. Despite the quadrupolar nature of the elastic interactions in amorphous solids, a behavior close to Return Point Memory (RPM) is observed. The quasi RPM property is used to build a simple Preisach-like model of directional memory.
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Dheeraj Kumar, Muhittin Mungan, Sylvain Patinet, Damien Vandembroucq. 2024-09-11. Self-organization and memory in a cyclically driven elasto-plastic model of an amorphous solid. https://arxiv.org/abs/2409.07621
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