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Mesoscopic-scale complexity in macroscopically-uniform plastic flow of an Al0.3CoCrFeNi high-entropy alloy

  • Jamieson Brechtl
  • , Rui Feng
  • , Peter K. Liaw
  • , Benoît Beausir
  • , Hafsa Jaber
  • , Tatiana Lebedkina
  • , Mikhail Lebyodkin

Research output: Contribution to journalArticlepeer-review

45 Scopus citations

Abstract

The concept of a smooth and homogeneous plastic flow of solids is nowadays constantly challenged by various observations of the self-organization of crystal defects on mesoscopic scales pertaining, e.g., to acoustic emission or the evolution of the local strain field. Such investigations would be of particular interest for High-Entropy Alloys (HEAs) characterized by extremely complex microstructures. However, the complexity of their deformation has been only studied in relation to the jerky flow. The present work explores a mesoscale complexity of the macroscopically-smooth plastic flow of an Al0.3CoCrFeNi alloy. An inclusive approach involving various experimental methods and complementary nonlinear analyses allowed to reveal transitions between distinct dynamical regimes, which may be assimilated with noises of different colors, in particular the blue noise that is rarely observed in complex systems, and various kinds of reddened behavior. Such findings provide significant new insights into the micro/macro transition in the deformation behavior of HEAs.

Original languageEnglish
Article number118445
JournalActa Materialia
Volume242
DOIs
StatePublished - Jan 1 2023

Funding

M.L. and T.L gratefully acknowledge the support from the French State through the program “Investment in the future” operated by the National Research Agency, in the framework of the LabEx DAMAS [ANR-11-LABX-0008–01]. P.K.L. greatly thanks the support from (1) the National Science Foundation (DMR-1611180 and 1809640) and (2) the Army Research Office (W911NF-13–1–0438 and W911NF-19–2–0049).

Keywords

  • Acoustic emission
  • Digital image correlation
  • High-entropy alloys
  • Scale transitions
  • Statistical analysis

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