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Denser glasses relax faster: enhanced atomic mobility and anomalous particle displacement under in-situ high pressure compression of metallic glasses

Authors :
Universitat Politècnica de Catalunya. Departament de Física
Universitat Politècnica de Catalunya. PTP-GlaDyM - Phase transitions, polymorphism, glasses and dynamics of the metastability
Cornet, Antoine
Garbarino, Gaston
Zontone, Federico
Chushkin, Yuriy
Jacobs, Jeroen
Pineda Soler, Eloi
Deschamps, Thierry
Li, Shubin
Ronca, Alberto
Shen, Jie
Morard, Guillaume
Neuber, Nico
Frey, Maximilian
Busch, Ralf
Gallino, Isabella
Universitat Politècnica de Catalunya. Departament de Física
Universitat Politècnica de Catalunya. PTP-GlaDyM - Phase transitions, polymorphism, glasses and dynamics of the metastability
Cornet, Antoine
Garbarino, Gaston
Zontone, Federico
Chushkin, Yuriy
Jacobs, Jeroen
Pineda Soler, Eloi
Deschamps, Thierry
Li, Shubin
Ronca, Alberto
Shen, Jie
Morard, Guillaume
Neuber, Nico
Frey, Maximilian
Busch, Ralf
Gallino, Isabella
Publication Year :
2023

Abstract

Despite that metallic glasses are among the most studied metallic materials, still very little is known on the evolution of their unique structural, dynamical and elastic properties under compression, owing to the difficulty to perform in-situ high pressure experiments. Coupling the brightest x-rays available in synchrotrons with cutting edge high pressure technologies, we provide direct evidence of the microscopic structural and dynamical mechanisms occurring under in-situ high pressure compression and decompression in the GPa range, from the onset of the perturbation up to a severely-deformed state. We show that while pressure promotes density increasing through quasi-elastic structural deformations, the atomic mobility exhibits a hysteresis and is enhanced up to a factor 15 even at temperatures well below the glass transition. This surprising behaviour results from a competition between fast avalanche-like atomic rearrangements and slow relaxation processes triggered by an anomalous super-diffusive collective particle displacement. These results provide new insights on the effect of deformation in non-ergodic materials and support the occurrence of string-like diffusion of liquid-like atoms in metallic glasses. They explain also the macroscopic impressive rejuvenation and strain hardening reported recently under ex-situ densifications.<br />This project has received funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (Grant Agreement No 948780).<br />Peer Reviewed<br />Objectius de Desenvolupament Sostenible::9 - Indústria, Innovació i Infraestructura::9.5 - Augmentar la investigació científica i millorar la capacitat tecnològica dels sectors industrials de tots els països, en particular els països en desenvolupament, entre d’altres maneres fomentant la innovació i augmentant substancialment, d’aquí al 2030, el nombre de persones que treballen en el camp de la investigació i el desenvolupa­ment per cada milió d’habitants, així com la despesa en investigació i desenvolupament dels sectors públic i privat<br />Objectius de Desenvolupament Sostenible::9 - Indústria, Innovació i Infraestructura<br />Postprint (author's final draft)

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1390663371
Document Type :
Electronic Resource