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Pitting corrosion as a mixed system: coupled deterministic-probabilistic simulation of pit growth

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Published under licence by IOP Publishing Ltd
, , Citation Israr B M Ibrahim et al 2018 IOP Conf. Ser.: Mater. Sci. Eng. 352 012018 DOI 10.1088/1757-899X/352/1/012018

1757-899X/352/1/012018

Abstract

Stochastic behavior of pitting corrosion poses a unique challenge in its computational analysis. However, it also stems from electrochemical activity causing general corrosion. In this paper, a framework for corrosion pit growth simulation based on the coupling of the Cellular Automaton (CA) and Boundary Element Methods (BEM) is presented. The framework assumes that pitting corrosion is controlled by electrochemical activity inside the pit cavity. The BEM provides the prediction of electrochemical activity given the geometrical data and polarization curves, while the CA is used to simulate the evolution of pit shapes based on electrochemical activity provided by BEM. To demonstrate the methodology, a sample case of local corrosion cells formed in pitting corrosion with varied dimensions and polarization functions is considered. Results show certain shapes tend to grow in certain types of environments. Some pit shapes appear to pose a higher risk by being potentially significant stress raisers or potentially increasing the rate of corrosion under the surface. Furthermore, these pits are comparable to commonly observed pit shapes in general corrosion environments.

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10.1088/1757-899X/352/1/012018