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Experimental Apparent Stern–Geary Coefficients for AZ31B Mg Alloy in Physiological Body Fluids for Accurate Corrosion Rate Determination

Federico R. García-Galván, S. Fajardo, Violeta Barranco, S. Feliú

2021Metals32 citationsDOIOpen Access PDF

Abstract

The corrosion behavior of AZ31B Mg alloy exposed to Ringer’s, phosphate-buffered saline (PBS), Hank’s, and simulated body fluid (SBF) solutions for 4 days was investigated using electrochemical impedance spectroscopy (EIS), potentiodynamic polarization, weight loss, and surface characterization. Changes in corrosion rates with immersion time determined by weight loss measurements were compared with EIS data to determine the possibility of obtaining quantitative electrochemical information. In addition, changes in the protective properties of the corrosion product layer calculated from the EIS parameters were evaluated as a function of their surface chemical composition as determined by X-ray photoelectron spectroscopy (XPS) and visual observations of the corroded specimen’s surface. Apparent Stern–Geary coefficients for the AZ31B Mg alloy in each test solution were calculated using the relationship between icorr from weight loss measurements and the EIS data (both Rp and Rt). This provided experimental reference B′ values that may be used as a useful tool in independent investigations to improve the accuracy of corrosion rates of AZ31B Mg alloy in simulated body solutions.

Topics & Concepts

CorrosionSimulated body fluidDielectric spectroscopyMaterials scienceAlloyX-ray photoelectron spectroscopyMagnesium alloyPolarization (electrochemistry)ElectrochemistryImmersion (mathematics)Analytical Chemistry (journal)Weight changeComposite materialMetallurgyChemistryChemical engineeringScanning electron microscopeChromatographyWeight lossElectrodeInternal medicinePhysical chemistryMedicinePure mathematicsEngineeringMathematicsObesityMagnesium Alloys: Properties and ApplicationsCorrosion Behavior and InhibitionAluminum Alloy Microstructure Properties