Microstructural evolution and corrosion mechanism of Cu-Y alloys: The role of Cu 6 Y precipitate phase

The microstructure and corrosion behavior of the Cu-Y alloys were investigated. It was found that with increasing Y content, Cu 6 Y gradually precipitated in a network morphology along grain boundaries, resulting in a phase composition of α + Cu 6 Y + (α+Cu 6 Y) eutectic . The alloy with an Y addition of approximately 0.08 wt.% exhibited the best corrosion resistance among all the studied samples. The flat and dense deposition layer was identified as key to inhibiting the continued corrosion of the Cu-Y alloy. The beneficial effect of Cu 6 Y can be demonstrated that its preferential corrosion provided sacrificial anode-like protection for the entire sample, while the released Y 3+ participate in the formation of the passive film, thereby inhibiting the corrosion process.

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Publication Details

Journal
Materials Science and Technology
Published
2026-09-22
DOI
https://doi.org/10.1177/02670836261489503
Primary Topic
Microstructure and mechanical properties
Type
article
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Microstructural evolution and corrosion mechanism of Cu-Y alloys: The role of Cu 6 Y precipitate phase

Xian Dong, Sujuan Zhong, Guo Peng, Ma Shuaijie et al.
Materials Science and Technology
Microstructure and mechanical properties
article

Microstructural evolution and corrosion mechanism of Cu-Y alloys: The role of Cu 6 Y precipitate phase

Xian Dong, Sujuan Zhong, Guo Peng, Ma Shuaijie, Liu Pan
article en

Abstract

The microstructure and corrosion behavior of the Cu-Y alloys were investigated. It was found that with increasing Y content, Cu 6 Y gradually precipitated in a network morphology along grain boundaries, resulting in a phase composition of α + Cu 6 Y + (α+Cu 6 Y) eutectic . The alloy with an Y addition of approximately 0.08 wt.% exhibited the best corrosion resistance among all the studied samples. The flat and dense deposition layer was identified as key to inhibiting the continued corrosion of the Cu-Y alloy. The beneficial effect of Cu 6 Y can be demonstrated that its preferential corrosion provided sacrificial anode-like protection for the entire sample, while the released Y 3+ participate in the formation of the passive film, thereby inhibiting the corrosion process.

Materials Science and Technology
Zhengzhou Institute of Machinery (CN)
Openalex Percentile: Top 24%
Microstructure and mechanical properties
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