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Corrosion resistance of additively manufactured aluminium alloys for marine applications

Engineering and Technology

Corrosion resistance of additively manufactured aluminium alloys for marine applications

C. Linder, B. Mehta, et al.

This research, conducted by Clara Linder and colleagues, reveals that a newly engineered Al-Mn-Cr-Zr alloy significantly outperforms the standard AlSi10Mg in resisting corrosion in marine environments. Their findings suggest promising applications for this innovative alloy in enhancing the durability of marine structures.... show more
Abstract
Additive manufacturing opens new possibilities for designing light-weight structures using aluminium alloys. The microstructure of two Al alloys and their corrosion resistance in NaCl and natural seawater environments were investigated. The newly designed Al-Mn-Cr-Zr based alloy showed a higher corrosion resistance than reference AlSi10Mg alloy in both environments in as printed and heat-treated conditions. The corrosion initiated in the Al matrix along the precipitates in the alloys where the Volta potential difference was found the highest. The coarser microstructure and precipitate composition of the new Al-alloy led to the formation of a resistant passive film which extended the passivity region of the Al-Mn-Cr-Zr alloy compared to the AlSi10Mg alloy. The effect of heat treatment could be seen in the microstructure as more precipitates were found in between the melt pool boundaries, which affected the corrosion initiation and slightly the pitting resistance. Overall, this study shows that a newly designed Al-alloy for additive manufacturing has a suitable corrosion resistance for applications in marine environments.
Publisher
npj Materials Degradation
Published On
May 04, 2024
Authors
Clara Linder, Bharat Mehta, Salil Sainis, Johan B. Lindén, Caterina Zanella, Lars Nyborg
Tags
corrosion resistance
additively manufactured
aluminum alloys
marine applications
Al-Mn-Cr-Zr alloy
NaCl
seawater
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