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  5. Predicting the effect of droplet geometry and size distribution on atmospheric corrosion

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Article
English
2022

Predicting the effect of droplet geometry and size distribution on atmospheric corrosion

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0 Files

English
2022
Corrosion Science
Vol 202
DOI: 10.1016/j.corsci.2022.110308

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Herman Terryn
Herman Terryn

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Nils Van den Steen
Yaiza González‐García
J.M.C. Mol
+2 more

Abstract

A new approach is proposed to numerically predict and study atmospheric corrosion for ranging droplet size distributions and the influence of the droplet geometry. The proposed methodology allows for a corrosion prediction based on observed droplet size distributions and droplet contact angles. A mechanistic finite element model, including oxygen transport and Butler-Volmer kinetics, is solved in order to obtain the current density as a function of the droplet geometry. This is done for a range of both droplet radii and contact angles. The computed corrosion current densities are then used as input for imposed droplet size distributions. This allows for a calculated material loss estimation for different distributions and electrolyte configurations and shows the extent of the impact of the droplet size distribution on atmospheric corrosion.

How to cite this publication

Nils Van den Steen, Yaiza González‐García, J.M.C. Mol, Herman Terryn, Yves Van Ingelgem (2022). Predicting the effect of droplet geometry and size distribution on atmospheric corrosion. Corrosion Science, 202, pp. 110308-110308, DOI: 10.1016/j.corsci.2022.110308.

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Publication Details

Type

Article

Year

2022

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Corrosion Science

DOI

10.1016/j.corsci.2022.110308

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