- Identification of strain fields in pure Al and hybrid Ni/Al metal foa…
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Identification of strain fields in pure Al and hybrid Ni/Al metal foams using X-ray micro-tomography under loading

  1. 1.
    SYSNO ASEP0466629
    Druh ASEPJ - Článek v odborném periodiku
    Zařazení RIVJ - Článek v odborném periodiku
    Poddruh JČlánek ve WOS
    NázevIdentification of strain fields in pure Al and hybrid Ni/Al metal foams using X-ray micro-tomography under loading
    Tvůrce(i) Fíla, T. (CZ)
    Jiroušek, O. (CZ)
    Jung, A. (DE)
    Kumpová, Ivana (UTAM-F) RID, SAI, ORCID
    Celkový počet autorů4
    Číslo článkuC11017
    Zdroj.dok.Journal of Instrumentation. - : Institute of Physics Publishing - ISSN 1748-0221
    Roč. 11, November (2016)
    Poč.str.9 s.
    Forma vydáníTištěná - P
    AkceInternational Workshop on Radiation Imaging Detectors /18./
    Datum konání03.07.2016 - 07.07.2016
    Místo konáníBarcelona
    ZeměES - Španělsko
    Typ akceWRD
    Jazyk dok.eng - angličtina
    Země vyd.GB - Velká Británie
    Klíč. slovacomputerized tomography (CT) ; computed radiography (CR) ; inspection with x-rays ; X-ray radiography and digital radiography (DR)
    Vědní obor RIVJJ - Ostatní materiály
    CEPLO1219 GA MŠMT - Ministerstvo školství, mládeže a tělovýchovy
    UT WOS000395672800017
    EID SCOPUS85000444206
    DOI https://doi.org/10.1088/1748-0221/11/11/C11017
    AnotaceHybrid foams are materials formed by a core from a standard open cell metal foam that
    is during the process of electrodeposition coated by a thin layer of different nanocrystalline metals.
    The material properties of the base metal foam are in this way modified resulting in higher plateau
    stress and, more importantly, by introduction of strain-rate dependence to its deformation response.
    In this paper, we used time-lapse X-ray micro-tomography for the mechanical characterization of
    Ni/Al hybrid foams (aluminium open cell foams with nickel coating layer). To fully understand the effects of the coating layer on the material’s effective properties, we compared the compressive
    response of the base uncoated foam to the response of the material with coating thickness of 50
    and 75 m. Digital volume correlation (DVC) was applied to obtain volumetric strain fields of the
    deforming micro-structure up to the densification region of the deforming cellular structure. The
    analysiswas performed as a compressive mechanical test with simultaneous observation usingX-ray
    radiography and tomography. A custom design experimental device was used for compression of
    the foam specimens in several deformation states directly in the X-ray setup. Planar X-ray images
    were taken during the loading phases and a X-ray tomography was performed at the end of each
    loading phase (up to engineering strain 22%). The samples were irradiated using micro-focus
    reflection type X-ray tube and images were taken using a large area flat panel detector. Tomography reconstructions were used for an identification of a strain distribution in the foam using digital volumetric correlation. A comparison of the deformation response of the coated and the uncoated foam in uniaxial quasi-static compression is summarized in the paper.
    PracovištěÚstav teoretické a aplikované mechaniky
    KontaktKulawiecová Kateřina, kulawiecova@itam.cas.cz, Tel.: 225 443 285
    Rok sběru2017
    Elektronická adresahttps://doi.org/10.1088/1748-0221/11/11/C11017
Počet záznamů: 1  

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