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dc.contributor.authorAntunes, Luiz Henrique Martinez-
dc.contributor.authorQuintero, John Jairo Hoyos-
dc.contributor.authorAndrade, Tathiane Caminha-
dc.contributor.authorSarvezuk, Paulo Willian Carvalho-
dc.contributor.authorWu, Leonardo-
dc.contributor.authorDiaz, Julian Arnaldo Ávila-
dc.contributor.authorOliveira, João Pedro-
dc.contributor.authorSchell, N.-
dc.contributor.authorMunhoz, André Luiz Jardini-
dc.contributor.authorŽilková, J.-
dc.contributor.authorFarina, Paula Fernanda da Silva-
dc.contributor.authorAbreu, Hamilton Ferreira Gomes de-
dc.contributor.authorBéreš, Miloslav-
dc.date.accessioned2022-06-29T16:51:36Z-
dc.date.available2022-06-29T16:51:36Z-
dc.date.issued2021-
dc.identifier.citationANTUNES, L.H.M. et al. Deformation-induced martensitic transformation in Co-28Cr-6Mo alloy produced by laser powder bed fusion: Comparison surface vs. bulk. Additive Manufacturing, [s.l.], v. 46, n. 102100, p. 1-10, 2021.pt_BR
dc.identifier.issn2214-8604-
dc.identifier.urihttp://www.repositorio.ufc.br/handle/riufc/66800-
dc.description.abstractThe wear resistance of the biomedical low-carbon Co-28Cr-6Mo (wt.-%) alloy is primarily determined by the onset and magnitude of the face-centered cubic to hexagonal close-packed deformation-induced martensitic phase transformation. In metal-on-metal joint bearings, local plastic deformation occurs on the surface and in the subsurface regions. This can cause deformation-assisted structural changes in the material, such as mechanical twinning and/or martensitic transformation. In the present work, we report the structural transition on the surface and bulk of a laser powder bed fusion additively manufactured Co-28Cr-6Mo alloy in response to an externally imposed load. This study was possible using in-situ synchrotron X-ray diffraction at two different energy levels. Our results revealed that from tensile deformation to fracture, the phase transformation kinetics and magnitude were marginally higher on the surface. During transformation, {200}FCC peak broadening was observed in the bulk and this was attributed to stacking fault accumulation.pt_BR
dc.language.isoenpt_BR
dc.publisherAdditive Manufacturingpt_BR
dc.subjectCoCrMo alloypt_BR
dc.subjectMartensitic phase transformationpt_BR
dc.subjectIn-situ synchrotron X-ray diffractionpt_BR
dc.subjectPeak broadeningpt_BR
dc.subjectVariant selectionpt_BR
dc.titleDeformation-induced martensitic transformation in Co-28Cr-6Mo alloy produced by laser powder bed fusion: Comparison surface vs. bulkpt_BR
dc.typeArtigo de Periódicopt_BR
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