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dc.contributor.authorO'Shaughnessy, Seamus
dc.date.accessioned2023-11-10T13:47:26Z
dc.date.available2023-11-10T13:47:26Z
dc.date.issued2023
dc.date.submitted2023en
dc.identifier.citationMcKenna, T. and Tomonto, C. and Duggan, G. and Lalor, E. and O'Shaughnessy, S. and Trimble, D., Evaluation of bimodal microstructures in selective-laser-melted and heat-treated Ti-6Al-4V, Materials and Design, 227, 111700, 2023en
dc.identifier.otherY
dc.description.abstractAs-built, SLM-printed Ti-6Al-4V parts suffer from non-equilibrium, brittle microstructures due to the formation of metastable α’-phase martensite as a result of the printing process. Post-processing heat treatments are required to alleviate residual stress and decompose the martensite into equilibrium phases. Using unconventional ‘cyclical’ heat treatment profiles, it is possible to achieve a bimodal microstructure as opposed to a more typical lamellar microstructure achieved using conventional heat treatment profiles. In the present research, the effect of cyclical heat treatment parameters (maximum temperature, minimum temperature, number of cycles and cooling regime) on the grain morphology, phase composition and mechanical performance (static and dynamic) has been evaluated. Furthermore, a comparison to a typical lamellar microstructure has been completed as a reference.en
dc.language.isoenen
dc.relation.ispartofseriesMaterials and Design;
dc.relation.ispartofseries227;
dc.relation.ispartofseries111700;
dc.rightsYen
dc.subjectSelective laser meltingen
dc.subjectTi-6Al-4Ven
dc.subjectHeat Treatmenten
dc.subjectBimodal Microstructureen
dc.titleEvaluation of bimodal microstructures in selective-laser-melted and heat-treated Ti-6Al-4Ven
dc.typeJournal Articleen
dc.type.supercollectionscholarly_publicationsen
dc.type.supercollectionrefereed_publicationsen
dc.identifier.peoplefinderurlhttp://people.tcd.ie/oshaugse
dc.identifier.rssinternalid251453
dc.identifier.doihttp://dx.doi.org/10.1016/j.matdes.2023.111700
dc.rights.ecaccessrightsopenAccess
dc.subject.TCDThemeSmart & Sustainable Planeten
dc.identifier.rssurihttps://www.sciencedirect.com/science/article/pii/S0264127523001156?via%3Dihub
dc.identifier.orcid_id0000-0001-6567-3378
dc.identifier.urihttp://hdl.handle.net/2262/104145


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