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dc.date.accessioned2023-05-03T15:21:52Z
dc.date.available2023-05-03T15:21:52Z
dc.date.issued2020-02-21
dc.identifierdoi:10.17170/kobra-202304207849
dc.identifier.urihttp://hdl.handle.net/123456789/14649
dc.language.isoengeng
dc.rightsNamensnennung 4.0 International*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.subjectadditive manufacturingeng
dc.subjectelectron backscatter diffractioneng
dc.subjectmicromechanical modelingseng
dc.subject316L stainless steelseng
dc.subject.ddc620
dc.subject.ddc660
dc.titleEffect of Grain Statistics on Micromechanical Modeling: The Example of Additively Manufactured Materials Examined by Electron Backscatter Diffractioneng
dc.typeAufsatz
dcterms.abstractMicromechanical modeling is one of the prominent numerical tools for the prediction of mechanical properties and the understanding of deformation mechanisms of metals. As input parameters, it uses data obtained from microstructure characterization techniques, among which the electron backscatter diffraction (EBSD) technique allows us to understand the nature of microstructural features, that are usually described by statistics. Because of these advantages, the EBSD dataset is widely used for synthetic microstructure generation. However, for the statistical description of microstructural features, the population of input data must be considered. Preferably, the EBSD measurement area must be sufficiently large to cover an adequate number of grains. However, a comprehensive study of this measurement area with a crystal plasticity finite element method (CPFEM) framework is still missing although it would considerably facilitate information exchange between experimentalists and simulation experts. Herein, the influence of the EBSD measurement area and the number of grains on the statistical description of the microstructural features and studying the corresponding micromechanical simulation results for 316L stainless steel samples produced by selective laser melting is investigated.eng
dcterms.accessRightsopen access
dcterms.creatorBiswas, Abhishek
dcterms.creatorPrasad, Mahesh R. G.
dcterms.creatorVajragupta, Napat
dcterms.creatorKostka, Aleksander
dcterms.creatorNiendorf, Thomas
dcterms.creatorHartmaier, Alexander
dc.relation.doidoi:10.1002/adem.201901416
dc.subject.swdRapid Prototyping <Fertigung>ger
dc.subject.swdElektronenrückstreubeugungger
dc.subject.swdMikromechanikger
dc.subject.swdModellierungger
dc.subject.swdNicht rostender Stahlger
dc.type.versionpublishedVersion
dcterms.source.identifiereissn:1527-2648
dcterms.source.issueIssue 5
dcterms.source.journalAdvanced Engineering Materialseng
dcterms.source.volumeVolume 22
kup.iskupfalse
dcterms.source.articlenumber1901416


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