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dc.contributor.authorZlámal, Jan
dc.contributor.authorMařík, Robert
dc.contributor.authorVojáčková, Barbora
dc.contributor.authorCristini, Valentino
dc.contributor.authorBrabec, Martin
dc.contributor.authorPraus, Luděk
dc.contributor.authorTippner, Jan
dc.date.accessioned2024-12-04T01:03:23Z
dc.date.available2024-12-04T01:03:23Z
dc.date.issued2024
dc.identifier.issn1435-0211 Sherpa/RoMEO, JCR
dc.identifier.urihttps://repozitar.mendelu.cz/xmlui/handle/20.500.12698/1975
dc.description.abstractPhysically modelling the mechanical response of a tree by numerical simulation depends on having accurate data on the mechanical properties of green hardwood. Lacking such data, we developed and validated an orthotropic elasto-plastic (E-P) material model, based on the results of experiments performed on European beech (Fagus sylvatica L.) green wood, capable of including both the non-linearity and orthotropic properties of the material. We selected 655 clear samples with the special orthotropic structure of annual rings. All samples were prepared immediately after felling; their moisture content (MC) was 80% on average. The mechanical responses in normal directions and shear are represented by bi-linear stress-strain curves. The E-P model was validated by comparing the force-deflection response of three-point bending of green wood samples in a finite-element method (FEM) simulation (the average relative error was 4.6% for point-wise and 1.7% for integral-wise comparison). The output of this work was a consistent set of material constants for the E-P material model that is now available for the structural analysis of beech wood with MC above to fibre saturation point (FSP), especially green wood, subjected to relatively high loads (such that a plastic deformation appears) and that can very well predict a non-linear response above the proportional limits.en
dc.format29
dc.publisherSpringer Japan KK
dc.relation.ispartofJournal of Wood Science
dc.relation.urihttps://doi.org/10.1186/s10086-024-02140-6
dc.rightsCC BY 4.0
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subjectFE modelen
dc.subjectGreen wooden
dc.subjectNon-linear materialen
dc.subjectTree biomechanics, orthotropic materialen
dc.subjectWood mechanical propertiesen
dc.titleElasto-plastic material model of green beech wooden
dc.typeJ_ČLÁNEK
dc.date.updated2024-12-04T01:03:23Z
dc.description.versionOA
local.identifier.doi10.1186/s10086-024-02140-6
local.identifier.scopus2-s2.0-85195593656
local.identifier.wos001243381700001
local.number7 June
local.volume70
local.identifier.obd43926746
local.identifier.e-issn1611-4663
dc.project.IDLL1909
dc.project.IDEF19_073/0016670
dc.project.IDDynamika stromu: popis mechanické odezvy na zatížení
dc.project.IDInterní grantová schémata Mendelovy univerzity v Brně
dc.identifier.orcidZlámal, Jan 0000-0002-9255-2923
dc.identifier.orcidMařík, Robert 0000-0001-7109-1526
dc.identifier.orcidVojáčková, Barbora 0000-0001-6433-8666
dc.identifier.orcidCristini, Valentino 0000-0002-7232-7462
dc.identifier.orcidBrabec, Martin 0000-0001-5575-8925
dc.identifier.orcidPraus, Luděk 0000-0002-9541-7532
dc.identifier.orcidTippner, Jan 0000-0001-8532-3690
local.contributor.affiliationLDF


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