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dc.rights.licenseopenen_US
dc.contributor.authorCHEN, Jiachao
hal.structure.identifierLaboratoire des Composites Thermostructuraux [LCTS]
dc.contributor.authorJACQUES, Sylvain
hal.structure.identifierConditions Extrêmes et Matériaux : Haute Température et Irradiation [CEMHTI]
dc.contributor.authorBARTHE, Marie-France
dc.contributor.authorZHANG, Chonghong
hal.structure.identifierConditions Extrêmes et Matériaux : Haute Température et Irradiation [CEMHTI]
dc.contributor.authorDESGARDIN, Pierre
dc.date.accessioned2021-07-21T12:33:35Z
dc.date.available2021-07-21T12:33:35Z
dc.date.issued2020-05-01
dc.identifier.issn0022-3115en_US
dc.identifier.urioai:crossref.org:10.1016/j.jnucmat.2020.152086
dc.identifier.urihttps://oskar-bordeaux.fr/handle/20.500.12278/110150
dc.description.abstractEnA newly developed clamping system for ceramic specimen is described in the present report. By using this system, the uniaxial tensile loading was first successfully applied up to fracture (950 MPa) on a SiCf/SiC minicomposite. A minicomposite is a 1D model composite. It consists of a SiC-based fiber tow embedded in a SiC matrix, which has a diameter of about 0.5 mm. Afterwards, the irradiation creep properties of SiCf/SiC minicomposites were studied. In-situ creep was performed in an in-beam creep device under uniaxial tensile stresses from 40 to 382 MPa during homogeneous helium irradiation. Homogenous irradiation was carried out by helium implantation with energies varying from 0 to 45 MeV. The displacement dose rate was 1.2 × 10−6 dpa/s. The average temperature was controlled to 700 and 900 °C within ±15 °C. Irradiation creep compliance of minicomposite was measured to be 3.07 × 10−5 and 5.43 × 10−5 dpa−1 MPa−1 at 700 °C and 900 °C, respectively.
dc.language.isoENen_US
dc.rightsAttribution-NonCommercial-ShareAlike 3.0 United States*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/3.0/us/*
dc.sourcecrossref
dc.subject.enSiCf/SiC composite
dc.subject.enHigh-temperature mechanical testing
dc.subject.enIrradiation creep
dc.subject.enClamping system
dc.title.enIn-beam creep of SiCf/SiC minicomposites under uniaxial tensile loading
dc.typeArticle de revueen_US
dc.identifier.doi10.1016/j.jnucmat.2020.152086en_US
dc.subject.halChimie/Matériauxen_US
bordeaux.journalJournal of Nuclear Materialsen_US
bordeaux.page152086en_US
bordeaux.volume533en_US
bordeaux.hal.laboratoriesLaboratoire des Composites Thermo Structuraux (LCTS) - UMR 5801en_US
bordeaux.institutionUniversité de Bordeauxen_US
bordeaux.institutionCNRSen_US
bordeaux.institutionCEAen_US
bordeaux.peerReviewedouien_US
bordeaux.inpressnonen_US
bordeaux.import.sourcedissemin
hal.identifierhal-03011690
hal.exportfalse
workflow.import.sourcedissemin
bordeaux.COinSctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Journal%20of%20Nuclear%20Materials&rft.date=2020-05-01&rft.volume=533&rft.spage=152086&rft.epage=152086&rft.eissn=0022-3115&rft.issn=0022-3115&rft.au=CHEN,%20Jiachao&JACQUES,%20Sylvain&BARTHE,%20Marie-France&ZHANG,%20Chonghong&DESGARDIN,%20Pierre&rft.genre=article


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