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dc.contributor.authorAbreu Fernandez, Carmen Maria 
dc.contributor.authorFeijoo Vazquez, Iria 
dc.contributor.authorPerez Vazquez, Maria Consuelo 
dc.date.accessioned2022-09-12T08:51:05Z
dc.date.available2022-09-12T08:51:05Z
dc.date.issued2022-09-04
dc.identifier.citationMetals, 12(9): 1473 (2022)spa
dc.identifier.issn20754701
dc.identifier.urihttp://hdl.handle.net/11093/3815
dc.description.abstractThe influence of annealing treatment on the microstructure and the corrosion behaviour of a complex bronze Al-Ni alloy was analysed. The microstructural characterization after thermic treatment shows that the retained β-phase disappears and the KII-phase undergoes a spheroidization process. Moreover, there is an augmentation of K-phase precipitates within the α-phase, particularly KIV and KV, which homogenizes the distribution of alloying elements between the phases. The corrosion behaviour was investigated by means of selective corrosion tests, potentiodynamic measurements, and electrochemical impedance spectroscopy. All of the experiments showed that thermic treatment greatly improves the corrosion resistance of the alloy. As such, annealing treatment influences a microstructure to be more dealloying resistant, which allows the development of a more protective air-formed passive film. On the other hand, the lower current registered after anodic peaks and Electrochemical Impedance Spectroscopy data seem be correlated with a more protective layer formed on annealed material. As such, this protective character is due to a greater incorporation of Al3+, Ni2+ and Cu2+ in the passive film, as revealed by X-ray Photoelectron Spectroscopy results.en
dc.description.sponsorshipXunta de Galicia | Ref. ED431B 2021/14spa
dc.language.isoengspa
dc.publisherMetalsspa
dc.rightsAttribution 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.titleEffect of the annealing treatment on the microstructure and corrosion resistance of a Cu-Al-Ni Alloyen
dc.typearticlespa
dc.rights.accessRightsopenAccessspa
dc.identifier.doi10.3390/met12091473
dc.identifier.editorhttps://www.mdpi.com/2075-4701/12/9/1473spa
dc.publisher.departamentoEnxeñaría dos materiais, mecánica aplicada e construciónspa
dc.publisher.grupoinvestigacionENCOMAT (Enxeñería da Corrosión e Materiais)spa
dc.publisher.grupoinvestigacionElectroquímica e Enxeñería de Materiaisspa
dc.subject.unesco3303.07 Tecnología de la Corrosiónspa
dc.subject.unesco3303.14 Revestimientos Protectoresspa
dc.subject.unesco3315 Tecnología Metalúrgicaspa
dc.subject.unesco3312 Tecnología de Materialesspa
dc.date.updated2022-09-12T07:56:12Z
dc.computerCitationpub_title=Metals|volume=12|journal_number=9|start_pag=1473|end_pag=spa


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    Attribution 4.0 International
    Except where otherwise noted, this item's license is described as Attribution 4.0 International