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Achieving strength–ductility–corrosion resistance balance in Cu–Ni–Al alloy via heterogeneous grains and coherent nano-lamellar precipitation

  • Zhumin Li*
  • , Haibo Shi
  • , Shengbin Li
  • , Xiao Wang
  • , Jianjun Hu
  • , Yuehong Zheng*
  • , Hongwei Yao
  • , Jianzhou Long
  • , Jiansheng Li
  • , Wei Jiang
  • , Ao Meng
  • , Junhua Luan
  • , Xiaona Li
  • *Corresponding author for this work

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

3 Downloads (CityUHK Scholars)

Abstract

Achieving the strength–ductility–corrosion resistance balance in Cu–Ni–Al alloys is significant for marine engineering. Here, the Cu alloy featuring ‘heterogeneous grain distribution and coherent nano-lamellar precipitation’ was fabricated, which exhibits a combination of ∼1 GPa yield strength (improved by ∼30% compared to commercial alloys) and 16% tensile ductility. This microstructural feature not only endows the ultrahigh strength, but also significantly enhances the work-hardening ability through strong interaction between multiple defects and the lamellae-like L1<sub>2</sub>-γ′ phase. Furthermore, its good corrosion resistance is attributed to a uniform Volta potential distribution and the rapid formation of a more compact, chemically stable passive film. © 2026 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.
Original languageEnglish
Pages (from-to)622-631
JournalMaterials Research Letters
Volume14
Issue number5
Online published24 Mar 2026
DOIs
Publication statusPublished - 2026

Funding

We would like to gratefully acknowledge the financial support of the National Natural Science Foundation of China [grant numbers 52361024 and 52501001], the Foundation of Key Laboratory of Solar Power System [grant number 2025SPKL03], the Natural Science Foundation of Gansu Province [grant number 24JRRA963], the Natural Science Foundation of Ningbo [grant number 2023J328], the Wuhu Science and Technology Planning Project [grant number 2023yf063] and the financial support from City University of Hong Kong [grant numbers 9360161 and 9600011].

Research Keywords

  • coherent precipitation
  • corrosion resistance
  • Cu–Ni–Al alloy
  • heterogeneous microstructure
  • strength–ductility synergy

Publisher's Copyright Statement

  • This full text is made available under CC-BY-NC 4.0. https://creativecommons.org/licenses/by-nc/4.0/

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