- By:
- Chen, Kangwei; CUI, Xiang-Yuan; Lim, Bryan ; Tran, Tien; Duguid, Andrew; Camilleri, Steven; Ringer, Simon; Nomoto, Keita
- Journal Name:
- Scripta Materialia
- Page Number:
- 117056
- Volume:
- 272
- Publication Date:
- October 30, 2025
- View DOI Listing:
- https://doi.org/10.1016/j.scriptamat.2025.117056
Abstract
Cu-30Ni alloys offer high strength and excellent corrosion resistance for maritime applications. While primarily a solid solution system, industrial alloys typically include microalloying additions of Fe, Mn, Nb and/or Si to enable age hardening. However, an understanding of the microstructural evolution during age hardening remains incomplete. Here, we conduct systematic ageing treatments and report the resulting hardness and microstructures. The Cu-30Ni alloy with Si aged at 650 °C for 6 h demonstrates significantly enhanced Vickers hardness, reaching ∼201 HV1 compared to 103 HV1 for the as-homogenised sample. Si-rich clusters and γ′ precipitates are identified, with their composition, size, and volume fraction quantified to determine their strengthening contributions. First-principles atomistic simulations elucidate the underlying formation mechanisms of these clusters and precipitates, highlighting the critical role of Si in driving their nucleation and growth. This study advances the design of high-strength, Cu alloys with the potential for corrosion resistance in demanding maritime environments.