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Influence of Oscillatory Shear on Nucleation in Metallic Glasses: A Molecular Dynamics Study

17 Pages Posted: 11 Oct 2022 Publication Status: Published

See all articles by Baoshuang Shang

Baoshuang Shang

Chinese Academy of Sciences (CAS) - Songshan Lake Materials Laboratory

Noël Jakse

University Grenoble Alpes - SIMaP

Pengfei Guan

Beijing Computational Science Research Center; Hangzhou Dianzi University

Weihua Wang

Chinese Academy of Sciences (CAS) - Songshan Lake Materials Laboratory; Chinese Academy of Sciences (CAS) - Institute of Physics

Jean-louis Barrat

University of Grenoble Alpes, CNRS - Interdisciplinary Physics Laboratory

Abstract

The process of crystal nucleation can be accelerated or retarded by ultrasonic vibration, which is particularly attractive for the addictive manufacture and thermoplastic forming of metallic glasses, however, the effect and mechanism of oscillatory loading on the nucleation process are still elusive. By using molecular dynamics simulation, the changes in the time-temperature-transformation  (TTT) curve  under oscillatory external loading are systematically investigated in two typical binary alloys. A glass forming ability dependent response to the external loading  is found, and the shortest incubation time is insensitive to the external loading, while the corresponding temperature can be significantly shifted. Within the framework of classical nucleation theory, a fitting formula is proposed to describe the simulation data quantitatively. In contrast to stationary shear, the elastic stress, rather than the strain rate, is the key parameter to control the evolution of TTT curve under oscillatory loading. Furthermore, the model shows that oscillatory loading can decouple the mobility and nucleation in the deeply supercooled liquid, hence the formation ability can be enhanced while the nucleation is suppressed, which is particularly helpful for the forming and manufacturing of metallic glasses.

Keywords: oscillatory deformation, glass forming ability, time-temperature-transformation curve, Molecular dynamics

Suggested Citation

Shang, Baoshuang and Jakse, Noël and Guan, Pengfei and Wang, Weihua and Barrat, Jean-louis, Influence of Oscillatory Shear on Nucleation in Metallic Glasses: A Molecular Dynamics Study. Available at SSRN: https://ssrn.com/abstract=4245028 or http://dx.doi.org/10.2139/ssrn.4245028

Baoshuang Shang

Chinese Academy of Sciences (CAS) - Songshan Lake Materials Laboratory

Dongguan, 523808
China

Noël Jakse (Contact Author)

University Grenoble Alpes - SIMaP ( email )

Pengfei Guan

Beijing Computational Science Research Center ( email )

Beijing, 100193
China

Hangzhou Dianzi University ( email )

Weihua Wang

Chinese Academy of Sciences (CAS) - Songshan Lake Materials Laboratory ( email )

Chinese Academy of Sciences (CAS) - Institute of Physics ( email )

Beijing, 100190
China

Jean-louis Barrat

University of Grenoble Alpes, CNRS - Interdisciplinary Physics Laboratory ( email )

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