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Cavitation erosion of the CoCrFeNi high entropy alloy having elemental segregation

  • K. C. Hoi
  • , W. H. Lei
  • , Yining Liu
  • , C. H. Shek
  • , Jessica T.G. Ferreira
  • , Nicete F.T. Cortez
  • , C. T. Kwok
  • , Y. F. Sun
  • , Valentino A.M. Cristino
  • , K. H. Lo*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

The cavitation-erosion (CE) damage features and a microstructural peculiarity of the CoCrFeNi high entropy alloy (HEA) are presented in this paper. While this HEA is theoretically predicted and often experimentally demonstrated to be a single-phase solid solution, noticeable elemental segregation has been observed in both the interdendritic regions and dendrite interiors in this study. This segregation causes a subtle reduction of lattice parameter, and the interdendritic segregated regions are frequently CE damage initiation sites. In the dendrite interiors, oxygen-rich particles with elemental segregation as their wrappings and the small speckles of elemental segregated regions show different CE damage features. In the dendrite interiors, CE-induced martensite formation is negligibly, and slip lines and their intersections are CE damage initiation sites. While a few CoCrFeNi-based HEAs have been shown to be CE-resistant in the literature, the CE resistance of the CoCrFeNi base itself is not high. © 2023 Elsevier B.V.
Original languageEnglish
Article number204990
JournalWear
Volume530-531
Online published8 Jun 2023
DOIs
Publication statusPublished - 15 Oct 2023

Funding

The work was supported by the University of Macau through MYRG2022-00005-FST and MYRG2018-00030-FST.

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