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  5. In-situ nanoscopic observations of dealloying-driven local corrosion from surface initiation to in-depth propagation

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Article
English
2020

In-situ nanoscopic observations of dealloying-driven local corrosion from surface initiation to in-depth propagation

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English
2020
Corrosion Science
Vol 177
DOI: 10.1016/j.corsci.2020.108912

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Herman Terryn
Herman Terryn

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Ali Kosari
H.W. Zandbergen
F. D. Tichelaar
+4 more

Abstract

Dealloying is involved in materials science responsible for fabrication of nanoscale structures beneficially but for corrosion degradations detrimentally. Detailed understanding related to the latter is critical for designing corrosion-resistance alloys and dedicated inhibition systems. Thus, direct nanoscopic observations of nano-structural and compositional evolutions during the process are essential. Here using liquid phase-transmission electron microscopy (LP-TEM), for the first time, we show dynamic evolution of intricate site-specific local corrosion linked to intermetallic particles (IMPs) in aerospace aluminium alloys. To thoroughly probe degradation events, oxidation direction is controlled by purposefully masking thin specimens, allowing for observing top-view surface initiation to cross-sectional depth propagation of local degradations. Real-time capturing validated and supported by post-mortem examinations shows a dealloying-driven process that initiates at IMPs and penetrates into the depth of the alloy, establishing macroscopic corrosion pits. Besides, controversial mechanisms of noble-metal redistribution are finally elucidated.

How to cite this publication

Ali Kosari, H.W. Zandbergen, F. D. Tichelaar, Peter Visser, Peyman Taheri, Herman Terryn, J.M.C. Mol (2020). In-situ nanoscopic observations of dealloying-driven local corrosion from surface initiation to in-depth propagation. Corrosion Science, 177, pp. 108912-108912, DOI: 10.1016/j.corsci.2020.108912.

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Publication Details

Type

Article

Year

2020

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Corrosion Science

DOI

10.1016/j.corsci.2020.108912

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