Modeling hydrogen transport and hydrogen-induced embrittlement
dc.contributor.author | Maincon, Philippe Emmanuel | |
dc.date.accessioned | 2020-12-02T08:59:49Z | |
dc.date.available | 2020-12-02T08:59:49Z | |
dc.date.created | 2020-11-27T10:57:46Z | |
dc.date.issued | 2020 | |
dc.identifier.isbn | 978-82-14-06445-2 | |
dc.identifier.uri | https://hdl.handle.net/11250/2711342 | |
dc.description.abstract | This document provides the theory manual and user manual for two finite elements for the modeling of hydrogen-induced embrittlement of metallic materials. The cohesive zone element (CZE) allows to simulate the creation of new surfaces and the corresponding absorption of energy. The absorption of energy is made a function of the hydrogen concentration. The volume element (DIFEL) accounts for mechanical deformation, the transport of hydrogen, and the kinetics of trapping and detrapping. | en_US |
dc.language.iso | eng | en_US |
dc.publisher | SINTEF Industri | en_US |
dc.relation.ispartof | SINTEF Rapport | |
dc.relation.ispartofseries | SINTEF Rapport; | |
dc.rights | Navngivelse-Ikkekommersiell 4.0 Internasjonal | * |
dc.rights.uri | http://creativecommons.org/licenses/by-nc/4.0/deed.no | * |
dc.subject | Hydrogen-diffusjon | en_US |
dc.subject | Hydrogen diffusion | en_US |
dc.subject | Hydrogensprøhet | en_US |
dc.subject | Hydrogen embrittlement | en_US |
dc.subject | Finite element analysis | en_US |
dc.subject | Finite element analysis | en_US |
dc.title | Modeling hydrogen transport and hydrogen-induced embrittlement | en_US |
dc.type | Research report | en_US |
dc.description.version | publishedVersion | en_US |
dc.rights.holder | Copyright: SINTEF | en_US |
dc.subject.nsi | VDP::Anvendt matematikk: 413 | en_US |
dc.subject.nsi | VDP::Applied mathematics: 413 | en_US |
dc.source.pagenumber | 33 | en_US |
dc.source.issue | 2020:01275 | en_US |
dc.identifier.cristin | 1853300 | |
dc.relation.project | Norges forskningsråd: 294739 | en_US |
cristin.ispublished | true | |
cristin.fulltext | original |
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