Abstract
Localized corrosion in multiphase aluminum alloys is governed by micro-galvanic coupling between intermetallic phases and the Al matrix. Here, an Al-Ce-Mg alloy containing an in-situ Al11Ce3 nano-network was fabricated via laser powder bed fusion to clarify the role of intermetallic morphology in corrosion behavior. Electrochemical measurements show that the as-built alloy exhibits an order-of-magnitude lower corrosion current density and higher polarization resistance than the heat-treated alloy. Scanning Kelvin probe force microscopy reveals that the nano-network reduces the potential difference between Al11Ce3 and the Al matrix from ∼111 mV to ∼26 mV. Meanwhile, XPS and TEM analyses reveal the formation of a compact CeO2-rich passive film that suppresses micro-galvanic corrosion and enhances corrosion resistance.
| Original language | English |
|---|---|
| Article number | 114172 |
| Journal | Corrosion Science |
| Volume | 271 |
| DOIs | |
| State | Published - Oct 2026 |
| Externally published | Yes |
Keywords
- Al-Ce-Mg alloy
- Corrosion mechanism
- Laser powder bed fusion
- Multi-scale characterization
- Passive film
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