DOI: 10.5006/mp2026_65_10-40 ISSN: 0094-1492

Aerospace Corrosion Modeling Improves Readiness for Military Aircraft

Thomas Curtin, Robert Adey, Sharon Mellings, Andres Peratta

Over the past five to 10 years, corrosion modeling for aerospace defense has advanced significantly. Software tool development based on mixed-potential theory and polarization-curve crossing enables quick assessment of corrosion rates for galvanic systems. Analytical transforms of bulk-electrolyte polarization data can adapt measurements to thin-film atmospheric exposures. Three-dimensional finite element analysis multiphysics simulations drive the study of galvanic interaction in multi-material aircraft component assemblies, simulate coating degradation, and model steady-state crevice environments. Corrosion degradation is increasingly integrated into model-based systems engineering, enabling lifecycle damage tracking and improved maintenance planning. These developments enhance predictive accuracy and support design-for-corrosion and sustainment strategies.