Upon loading, amorphous solids can exhibit brittle yielding, with the abrupt formation of macroscopic shear bands leading to fracture, or ductile yielding, with a multitude of plastic events leading to homogeneous flow. It has been recently proposed, and subsequently questioned, that the two regimes are separated by a sharp critical point, as a function of some control parameter characterizing the intrinsic disorder strength and the degree of stability of the solid. In order to resolve this issue, we have performed extensive numerical simulations of athermally driven elastoplastic models with long-range and anisotropic realistic interaction kernels in two and three dimensions. Our results provide clear evidence for a finite-disorder critical point separating brittle and ductile yielding, and we provide an estimate of the critical exponents in 2D and 3D.

Finite-Disorder Critical Point in the Yielding Transition of Elastoplastic Models / Rossi, Saverio; Biroli, Giulio; Ozawa, Misaki; Tarjus, Gilles; Zamponi, Francesco. - In: PHYSICAL REVIEW LETTERS. - ISSN 1079-7114. - (2022). [10.1103/PhysRevLett.129.228002]

Finite-Disorder Critical Point in the Yielding Transition of Elastoplastic Models

Giulio Biroli;Gilles Tarjus;Francesco Zamponi
2022

Abstract

Upon loading, amorphous solids can exhibit brittle yielding, with the abrupt formation of macroscopic shear bands leading to fracture, or ductile yielding, with a multitude of plastic events leading to homogeneous flow. It has been recently proposed, and subsequently questioned, that the two regimes are separated by a sharp critical point, as a function of some control parameter characterizing the intrinsic disorder strength and the degree of stability of the solid. In order to resolve this issue, we have performed extensive numerical simulations of athermally driven elastoplastic models with long-range and anisotropic realistic interaction kernels in two and three dimensions. Our results provide clear evidence for a finite-disorder critical point separating brittle and ductile yielding, and we provide an estimate of the critical exponents in 2D and 3D.
2022
Glass transition; elasto plastic models; glass rheology
01 Pubblicazione su rivista::01a Articolo in rivista
Finite-Disorder Critical Point in the Yielding Transition of Elastoplastic Models / Rossi, Saverio; Biroli, Giulio; Ozawa, Misaki; Tarjus, Gilles; Zamponi, Francesco. - In: PHYSICAL REVIEW LETTERS. - ISSN 1079-7114. - (2022). [10.1103/PhysRevLett.129.228002]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1695726
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