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Data: Corrosion of additively manufactured Ti6Al4V alloy in saline and acidic media

dc.contributor.authorMora Sánchez, Hugo
dc.contributor.authorCollado Vian, Miguel
dc.contributor.authorMohedano Sánchez, Marta
dc.contributor.authorArrabal Durán, Raúl
dc.contributor.authorMatykina, Endzhe
dc.data.typeDatos de investigación
dc.date.accessioned2025-03-11T09:57:59Z
dc.date.available2025-03-11T09:57:59Z
dc.date.issued2024-02-02
dc.descriptionData for paper entitled, "Corrosion of additively manufactured Ti6Al4V alloy in saline and acidic media" including: - Processed Data: Polarization curves as a function of alloy, AM orientation and heat treatment; Electrochemical impedance spectroscopy - Processed Images: SEM, Schematic representation, confocal images - Tables (processed data)
dc.description.abstractThe present work aims to provide corrosion performance data for an additively manufactured Ti6Al4V alloy in saline and polluted environments. The as-received additively manufactured material underwent heat treatment at 850 °C for 3 h to transform the acicular α’ microstructure into a lamellar α microstructure. Comparative corrosion assessments were conducted between the heat-treated substrates, the as-received condition, and a conventionally mill-annealed alloy. Potentiodynamic polarization experiments were carried out in saline (3.5 wt.% NaCl) and acid aqueous media ((NH4)2SO4 containing Harrison’s solution). The corrosion performance of additively manufactured substrates matched or surpassed that of the conventional alloy in Harrison’s solutions while remaining inferior in saline medium, despite forming a thicker passive film. Overall, the XY plane showed better corrosion performance, particularly after the elimination of the acicular α’ martensite by the applied heat treatment. The results also suggested that the presence of the coarse β phase was beneficial in 3.5 wt.% NaCl solution and detrimental in Harrison’s solutions, more so in acidified and fluorinated conditions.
dc.description.departmentDepto. de Ingeniería Química y de Materiales
dc.description.facultyFac. de Ciencias Químicas
dc.description.sponsorshipAgencia Estatal de Investigación (España)
dc.description.sponsorshipComunidad de Madrid
dc.description.sponsorshipFEDER, EU
dc.description.sponsorshipUniversidad Complutense de Madrid
dc.description.statuspub
dc.identifier.doi10.3390/ma17030712
dc.identifier.issn1996-1944
dc.identifier.officialurlhttps://doi.org/10.3390/ma17030712
dc.identifier.relatedurlhttps://www.mdpi.com/1996-1944/17/3/712
dc.identifier.urihttps://hdl.handle.net/20.500.14352/118654
dc.language.isoeng
dc.publisherMDPI
dc.relation.projectIDinfo:eu-repo/grantAgreement/PID2021–124341OB-C22/AEI/10.13039/501100011033/FEDER
dc.relation.projectIDinfo:eu-repo/grantAgreement//S2018/NMT-4411
dc.relation.projectIDinfo:eu-repo/grantAgreement//RYC 2017-21843
dc.relation.projectIDinfo:eu-repo/grantAgreement//PEJD-2019-POST/IND-16119
dc.relation.projectIDinfo:eu-repo/grantAgreement//FEI-EU-20-05
dc.rights.accessRightsopen access
dc.subject.cdu620
dc.subject.keywordAdditive manufacturing
dc.subject.keywordSelective laser melting
dc.subject.keywordTitanium
dc.subject.keywordHeat treatment
dc.subject.keywordAcid rain
dc.subject.keywordSeawater
dc.subject.keywordCorrosion
dc.subject.keywordPassive layer
dc.subject.ucmMateriales
dc.subject.unesco3312 Tecnología de Materiales
dc.titleData: Corrosion of additively manufactured Ti6Al4V alloy in saline and acidic media
dc.typedataset
dc.type.hasVersionVoR
dspace.entity.typePublication
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relation.isAuthorOfPublication160ef5bd-2d04-4f6c-b028-cb7ce4cf8d38
relation.isAuthorOfPublication6a953ac5-3b84-40fc-a995-2a00ac938151
relation.isAuthorOfPublication427b12dd-40e9-49e6-a8fe-d41e79a056ff
relation.isAuthorOfPublication.latestForDiscovery6dd5c101-c3f7-4bcb-a453-b6f9d73986bd

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