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Low- and high-frequency fatigue of bulk metallic glasses

  • Yu Petrusenko*
  • , A. Bakai
  • , I. Neklyudov
  • , S. Bakai
  • , V. Borysenko
  • , G. Wang
  • , P. K. Liaw
  • , L. Huang
  • , T. Zhang
  • *Corresponding author for this work
  • NASU - Kharkov Institute of Physics and Technology
  • University of Tennessee
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

The 2.5 MeV electron-irradiation and resistance-recovery experiments were performed. It was found that the majority of atoms of a (Zr 0.55Al0.10Ni0.05Cu0.30) 99Y1 bulk metallic glass (BMG) possess a locally preferred order, and vacancies are stable point defects. Low- and high-frequency compression-compression fatigue experiments show that the fatigue-endurance limit and mode of the fatigue fracture of this BMG essentially depend on the cycling frequency. At the low-frequency cycling (10 Hz), the catastrophic crack is initiated mainly due to the shear-of-steps formation, and the fatigue-endurance limit is ∼0.44 σFSFS is the fracture stress). At the high-frequency cycling (20 kHz), the catastrophic crack forms due to the propagation and mergence of nano-cracks initiated from slip layers at intercluster boundaries. The fatigue-endurance limit in this case is a random quantity with a mean value of ∼0.04 σFS.

Original languageEnglish
Pages (from-to)S123-S127
JournalJournal of Alloys and Compounds
Volume509
Issue numberSUPPL. 1
DOIs
StatePublished - 14 Jul 2011

Keywords

  • Clusters
  • Metallic glasses
  • Point defects
  • Ultrasonics

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