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Origin of strain hardening in monolithic metallic glasses

X. Yuan1, D. Şopu1,2,*, and J. Eckert1,3

  • 1Erich Schmid Institute of Materials Science, Austrian Academy of Sciences, Jahnstraße 12, A-8700 Leoben, Austria
  • 2Technische Universität Darmstadt, Institut für Materialwissenschaft, Fachgebiet Materialmodellierung, Otto-Berndt-Straße 3, D-64287 Darmstadt, Germany
  • 3Department of Materials Science, Chair of Materials Physics, Mountanuniversität Leoben, Jahnstraße 12, A-8700 Leoben, Austria

  • *Daniel.Sopu@oeaw.ac.at

Phys. Rev. B 103, L140107 – Published 29 April, 2021

DOI: https://doi.org/10.1103/PhysRevB.103.L140107

Abstract

To overcome the brittleness of metallic glasses (MGs), their structure, chemistry, or loading conditions are usually controlled. Here, the local stress state in MGs was modulated without affecting their structure. The elastically designed MG heterostructures provide enhanced ductility together with strain hardening during loading. The stress heterogeneity leads to shear band multiplication that consequently enhances the macroscopic ductility of MGs. In addition, the residual compressive stress significantly increases the strength of the glass and is responsible for the observed strain hardening.

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