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Fatigue stress concentration and notch sensitivity in nanocrystalline metals

  • Timothy A. Furnish
  • , Brad L. Boyce
  • , John A. Sharon
  • , Christopher J. O'Brien
  • , Blythe G. Clark
  • , Christian L. Arrington
  • , Jamin R. Pillars

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

Recent studies have shown the potential for nanocrystalline metals to possess excellent fatigue resistance compared to their coarse-grained counterparts. Although the mechanical properties of nanocrystalline metals are believed to be particularly susceptible to material defects, a systematic study of the effects of geometric discontinuities on their fatigue performance has not yet been performed. In the present work, nanocrystalline Ni-40 wt%Fe containing both intrinsic and extrinsic defects were tested in tension-tension fatigue. The defects were found to dramatically reduce the fatigue resistance, which was attributed to the relatively high notch sensitivity in the nanocrystalline material. Microstructural analysis within the crack-initiation zones underneath the defects revealed cyclically-induced abnormal grain growth (AGG) as a predominant deformation and crack initiation mechanism during high-cycle fatigue. The onset of AGG and the ensuing fracture is likely accelerated by the stress concentrations, resulting in the reduced fatigue resistance compared to the relatively defect-free counterparts.
Original languageEnglish
Pages (from-to)740-752
Number of pages13
JournalJournal of Materials Research
Volume31
Issue number6
DOIs
StatePublished - Mar 28 2016
Externally publishedYes

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