The corrosion protection of AA2024-T3 aluminium alloy by leaching of lithium-containing salts from organic coatings

Author:

Visser Peter12345,Liu Yanwen6789,Zhou Xiaorong6789,Hashimoto Teruo6789,Thompson George E.6789,Lyon Stuart B.6789,van der Ven Leendert G. J.510114,Mol Arjan J. M. C.1234,Terryn Herman. A.123412

Affiliation:

1. Delft University of Technology

2. Department of Materials Science and Engineering

3. Delft

4. The Netherlands

5. AkzoNobel

6. School of materials

7. The University of Manchester

8. Manchester

9. UK

10. Automotive and Aerospace Coatings

11. Sassenheim

12. Vrije Universiteit Brussel

Abstract

Lithium carbonate and lithium oxalate were incorporated as leachable corrosion inhibitors in model organic coatings for the protection of AA2024-T3. The coated samples were artificially damaged with a scribe. It was found that the lithium-salts are able to leach from the organic coating and form a protective layer in the scribe on AA2024-T3 under neutral salt spray conditions. The present paper shows the first observation and analysis of these corrosion protective layers, generated from lithium-salt loaded organic coatings. The scribed areas were examined by scanning and transmission electron microscopy before and after neutral salt spray exposure (ASTM-B117). The protective layers typically consist of three different layered regions, including a relatively dense layer near the alloy substrate, a porous middle layer and a flake-shaped outer layer, with lithium uniformly distributed throughout all three layers. Scanning electron microscopy and white light interferometry surface roughness measurements demonstrate that the formation of the layer occurs rapidly and, therefore provides an effective inhibition mechanism. Based on the observation of this work, a mechanism is proposed for the formation of these protective layers.

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry

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