Corrosion Behavior of AA2055 Aluminum-Lithium Alloys Anodized in the Presence of Sulfuric Acid Solution

The aim of this work was to evaluate the corrosion behavior of the AA2055 Aluminum-lithium alloy anodized in a sulfuric acid (H2SO4) bath, varying the current density of 0.19 and 1 A·cm−2 and why the sealing solution was water (H2O) and sodium dichromate (Na2Cr2O7). Anodized samples were exposed to...

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Veröffentlicht in:Coatings (Basel) 2021-11, Vol.11 (11), p.1278
Hauptverfasser: Samaniego-Gámez, Pedro, Almeraya-Calderon, Facundo, Maldonado-Bandala, Erick, Cabral-Miramontes, Jose, Nieves-Mendoza, Demetrio, Olguin-Coca, Javier, Lopez-Leon, Luis, Silva Vidaurri, Luis, Zambrano-Robledo, Patricia, Gaona-Tiburcio, Citlalli
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Sprache:eng
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Zusammenfassung:The aim of this work was to evaluate the corrosion behavior of the AA2055 Aluminum-lithium alloy anodized in a sulfuric acid (H2SO4) bath, varying the current density of 0.19 and 1 A·cm−2 and why the sealing solution was water (H2O) and sodium dichromate (Na2Cr2O7). Anodized samples were exposed to a 10 vol.% H2SO4 solution and the electrochemical technique used was electrochemical impedance spectroscopy. Scanning electron microscopy and X-ray photoelectron spectroscopy were employed to characterization of the anodizing layer, determinate morphology and thickness of coatings. The Na2Cr2O7 sealing solution tends to increase the charge transfer resistance and produces a more homogeneous and compact passive oxide layer, and imparts a corrosion inhibition protection to the AA2055. SEM observations indicated that the morphology and thickness of the anodic films formed on AA2055 aluminum-lithium alloy anodized have the best results for both current densities.
ISSN:2079-6412
2079-6412
DOI:10.3390/coatings11111278