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Strengthening mechanism in Al–Cu–Li alloy processed by friction consolidation followed by high-pressure torsion

  • Elizabeth Mathew*
  • , Jürgen Markmann
  • , Chang Yin Cheng Chan
  • , Yulia Ivanisenko
  • , Henry Ovri
  • , Uceu Fuad Hasan Suhuddin
  • , Peter Staron
  • , Benjamin Klusemann
  • *Corresponding author for this work

Research output: Journal contributionsJournal articlesResearchpeer-review

Abstract

The primary objective of this study is to explore the precipitation behavior of Al–Cu–Li alloy powder processed through a two-step approach: friction consolidation (FC) followed by high-pressure torsion (HPT). Microstructure analysis by scanning electron microscope shows a refined microstructure after FC, with a further reduction in grain size following HPT. X-ray diffraction analysis confirmed the formation of T1, T2, and δ precipitates after FC, which persisted even after HPT. Small-angle X-ray scattering shows a reduction in the volume fraction of larger precipitate particles after HPT, while the smaller grain volume fraction increased. Additionally, the volume fraction of precipitates decreased as a function of strain. To understand the contributions of various mechanisms to an enhanced hardness observed after HPT, a physical model was employed. This study explores how HPT influences dislocation behavior, precipitation, and grain size, highlighting its role in tailoring the microstructure and properties of the friction consolidated Al–Cu–Li alloy.

Original languageEnglish
Article number185374
JournalJournal of Alloys and Compounds
Volume1050
Number of pages12
ISSN0925-8388
DOIs
Publication statusPublished - 15.01.2026

Bibliographical note

Publisher Copyright:
© 2025 The Authors

Research areas and keywords

  • Al–Cu–Li alloy
  • FC
  • HPT
  • Precipitation
  • SAXS
  • Engineering

ASJC Scopus Subject Areas

  • Mechanics of Materials
  • Mechanical Engineering
  • Metals and Alloys
  • Materials Chemistry

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