Pith. sign in

Energy Dissipation in Cyclic Strain of Amorphous Solids

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

The study of the response of amorphous materials to oscillatory strain is traditionally performed with many repeated cycles. We argue that it pays to consider carefully just one cycle (and may be a second), to reveal the rich physics that characterizes cyclic strain. The response can be conservative or dissipative, with a sharp transition between these options as a function of preparation parameters, accompanied by symmetry breaking and the onset of screening. We choose an example for which the mesoscopic theory can be solved exactly, and the microscopic physics can be revealed by numerical simulations. The mechanism of energy dissipation (when it exists) is explored in detail, shedding light on the reason why repeated cycles exhibit ever decreasing dissipation per cycle, which is often consistent with a universal law.

citation-role summary

background 1

citation-polarity summary

years

2025 1

verdicts

CONDITIONAL 1

roles

background 1

polarities

unclear 1

representative citing papers

Aging of amorphous materials under cyclic strain

cond-mat.soft · 2025-06-10 · conditional · novelty 7.0

Aging under slow cyclic strain is characterized by a logarithmic decay of dissipation per cycle, which selects a bistable spring-network model over simpler hysteron models.

citing papers explorer

Showing 1 of 1 citing paper.

  • Aging of amorphous materials under cyclic strain cond-mat.soft · 2025-06-10 · conditional · none · ref 62 · internal anchor

    Aging under slow cyclic strain is characterized by a logarithmic decay of dissipation per cycle, which selects a bistable spring-network model over simpler hysteron models.