Numerical analysis of small-scale concrete beams strengthened with CFRP under impact loading

Darya Memon, Stijn Matthys, David Lecompte

    Publikation: Beitrag in Buch/Bericht/KonferenzbandKonferenzbeitragBegutachtung

    Abstract

    Reinforced concrete structures are vulnerable to impact loads (e.g. rock-fall, vehicle collision or ship impact) during their service life. It is of interest to understand the impact load behaviour of reinforced concrete and its potentially catastrophic failure. This paper presents a preliminary study, on small-scale reinforced concrete beams strengthened with carbon fibre reinforced polymer (CFRP) under low-velocity impact. This study comprises both experimental work, making use of a drop-weight set-up, and a non-linear finite element model (FEM). The FEM was validated using the results achieved from the experiments. On overall, the simulation yielded promising results in a consistent prediction of the displacement and failure behavior mechanism, though further sensitivity analysis is needed with respect to the modelling of the specimen boundary conditions. In line with observations in literature, the CFRP strengthening of the test specimens demonstrated to be an effective technique to improve the resistance of the reinforced concrete beams under impact load.

    OriginalspracheEnglisch
    TitelConcrete structures for resilient society - Proceedings of the fib Symposium, 2020
    UntertitelConcrete Structures for Resilient Society
    Redakteure/-innenBin Zhao, Xilin Lu
    Herausgeber (Verlag)International Federation for Structural Concrete
    Seiten857-864
    Seitenumfang8
    ISBN (elektronisch)9782940643042
    PublikationsstatusVeröffentlicht - 2020
    VeranstaltungInternational fib Symposium on Concrete structures for resilient society, 2020 - Virtual, Online
    Dauer: 22 Nov. 202024 Nov. 2020

    Publikationsreihe

    NameProceedings of the fib Symposium 2020: Concrete Structures for Resilient Society

    Konferenz

    KonferenzInternational fib Symposium on Concrete structures for resilient society, 2020
    OrtVirtual, Online
    Zeitraum22/11/2024/11/20

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