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dc.contributor.authorOlden, Vigdis
dc.contributor.authorHajilou, Tarlan
dc.contributor.authorKheradmand, Nousha
dc.contributor.authorBarnoush, Afrooz
dc.contributor.authorAlvaro, Antonio
dc.contributor.authorOsen, Vidar
dc.date.accessioned2017-11-27T12:10:42Z
dc.date.available2017-11-27T12:10:42Z
dc.date.created2017-11-23T14:29:11Z
dc.date.issued2016
dc.identifier.isbn978-0-7918-6138-7
dc.identifier.urihttp://hdl.handle.net/11250/2468123
dc.description.abstractThis work is part of a multi scale computational and experimental approach in which first principle modelling, nanoscale experiments and continuum simulations are combined in order to represent hydrogen induced degradation and cracking. Nanomechanical testing in air and under electrochemical hydrogen charging conditions are carried out on µm sized single crystal cantilevers of Fe3%Si. Finite element simulations of the cantilever beam testing are performed to obtain the cohesive parameters best representing the yield point of the experimental load displacement curves. The cantilevers tested under hydrogen influence show brittle as well as increased plastic behavior as compared to testing in air. Best fit to the experimental results is obtained for traction separation laws that yielded cohesive energies of 10.1 J/m2 for air and 6.8 J/m2 for hydrogen charging conditions.nb_NO
dc.language.isoengnb_NO
dc.publisherAmerican Society of Mechanical Engineers (ASME)nb_NO
dc.relation.ispartofMaterial Performance in Hydrogen Environments
dc.subjectBruddmekanikknb_NO
dc.subjectFracture mechanicsnb_NO
dc.subjectHydrogensprøhetnb_NO
dc.subjectHydrogen embrittlementnb_NO
dc.subjectNumerisk modelleringnb_NO
dc.subjectNumeric modellingnb_NO
dc.titleHydrogen Embrittlement in Fe3%Si, Visited by Nanomechanical Testing and Cohesive Zone Simulationnb_NO
dc.typeChapternb_NO
dc.description.versionsubmittedVersionnb_NO
dc.subject.nsiVDP::Matematikk og naturvitenskap: 400nb_NO
dc.subject.nsiVDP::Mathematics and natural scienses: 400nb_NO
dc.source.pagenumber581-588nb_NO
dc.identifier.doi10.1115/1.861387_ch66
dc.identifier.cristin1517748
dc.relation.projectNorges forskningsråd: 244068nb_NO
dc.description.localcodeThis paper will not be available due to copyright restrictions (c) 2016 by ASMEnb_NO
cristin.unitcode194,64,92,0
cristin.unitnameInstitutt for maskinteknikk og produksjon
cristin.ispublishedtrue
cristin.fulltextpreprint
cristin.qualitycode1


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