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dc.contributor.authorKhrapov, Dmitriyen
dc.contributor.authorKozadaeva, Mariyaen
dc.contributor.authorManabaev, Kairat Kamitovichen
dc.contributor.authorPanin, Alexey Viktorovichen
dc.contributor.authorSjostrom, Williamen
dc.contributor.authorKoptyug, Andrey Valentinovichen
dc.contributor.authorMishurova, Tatjyana Aleksandrovnaen
dc.contributor.authorEvsevleev, S.en
dc.contributor.authorMeinel, Dietmaren
dc.contributor.authorBruno, Giovannien
dc.contributor.authorCheneler, D.en
dc.contributor.authorSurmenev, Roman Anatolievichen
dc.contributor.authorSurmeneva, Maria Alexandrovnaen
dc.date.accessioned2022-06-07T05:27:42Z-
dc.date.available2022-06-07T05:27:42Z-
dc.date.issued2021-
dc.identifier.citationDifferent Approaches for Manufacturing Ti-6Al-4V Alloy with Triply Periodic Minimal Surface Sheet-Based Structures by Electron Beam Melting / D. Khrapov, M. Kozadaeva, K. K. Manabaev [et al.] // Membranes. — 2021. — Vol. 14, iss. 17. — [4912, 21 p.].en
dc.identifier.urihttp://earchive.tpu.ru/handle/11683/71112-
dc.description.abstractTargeting biomedical applications, Triply Periodic Minimal Surface (TPMS) gyroid sheet-based structures were successfully manufactured for the first time by Electron Beam Melting in two different production Themes, i.e., inputting a zero (Wafer Theme) and a 200 [mu]m (Melt Theme) wall thickness. Initial assumption was that in both cases, EBM manufacturing should yield the structures with similar mechanical properties as in a Wafer-mode, as wall thickness is determined by the minimal beam spot size of ca 200 µm. Their surface morphology, geometry, and mechanical properties were investigated by means of electron microscopy (SEM), X-ray Computed Tomography (XCT), and uniaxial tests (both compression and tension). Application of different manufacturing Themes resulted in specimens with different wall thicknesses while quasi-elastic gradients for different Themes was found to be of 1.5 GPa, similar to the elastic modulus of human cortical bone tissue. The specific energy absorption at 50% strain was also similar for the two types of structures. Finite element simulations were also conducted to qualitatively analyze the deformation process and the stress distribution under mechanical load. Simulations demonstrated that in the elastic regime wall, regions oriented parallel to the load are primarily affected by deformation. We could conclude that gyroids manufactured in Wafer and Melt Themes are equally effective in mimicking mechanical properties of the bones.en
dc.format.mimetypeapplication/pdf-
dc.language.isoenen
dc.publisherMDPI AGen
dc.relation.ispartofMembranes. 2021. Vol. 14, iss. 17en
dc.rightsinfo:eu-repo/semantics/openAccess-
dc.rightsAttribution-NonCommercial 4.0 Internationalen
dc.rights.urihttps://creativecommons.org/licenses/by-nc/4.0/-
dc.sourceMembranesen
dc.subjectэлектронно-лучевая плавкаru
dc.subjectстроительные лесаru
dc.subjectлегкие конструкцииru
dc.subjectкомпьютерная томографияru
dc.subjectметод конечных элементовru
dc.subjectсплавыru
dc.subjectelectron beam meltingen
dc.subjectlightweight structuresen
dc.subjectcomputed tomographyen
dc.subjectfinite element analysisen
dc.subjectTi-6Al-4Ven
dc.titleDifferent Approaches for Manufacturing Ti-6Al-4V Alloy with Triply Periodic Minimal Surface Sheet-Based Structures by Electron Beam Meltingen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/article-
dc.typeinfo:eu-repo/semantics/publishedVersion-
dcterms.audienceResearchesen
local.description.firstpage4912-
local.filepathreprint-nw-37573.pdf-
local.filepathhttps://doi.org/10.3390/ma14174912-
local.identifier.bibrecRU\TPU\network\37573-
local.identifier.perskeyRU\TPU\pers\43119-
local.identifier.perskeyRU\TPU\pers\36301-
local.identifier.perskeyRU\TPU\pers\34630-
local.identifier.perskeyRU\TPU\pers\31885-
local.identifier.perskeyRU\TPU\pers\31894-
local.issue17-
local.localtypeСтатьяru
local.volume14-
dc.identifier.doi10.3390/ma14174912-
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