Abstract
The effect of TiC on corrosion process, particularly the passive and initial stages, is unclear. The passivation and initial corrosion of 2024-TiC AMCs are investigated in this report. It is found that a small amount of TiC improves corrosion resistance by reducing galvanic corrosion current density and forming a stable passive layer with low Cl⁻ adsorption and cation vacancy density, minimizing dissolution. However, excessive TiC causes uneven distribution, aggregation of Cl⁻, and passive film rupture, leading to anode aluminum dissolution and accelerated pitting corrosion propagation. These findings highlight the balance requirement for optimal TiC additive used in enhancing corrosion resistance.
| Original language | English |
|---|---|
| Article number | 112886 |
| Journal | Corrosion Science |
| Volume | 250 |
| DOIs | |
| State | Published - 1 Jul 2025 |
Keywords
- Aluminum matrix composites
- Passive film
- Pitting corrosion
- Spark plasma sintering
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