Investigating the effect of bond slip on the seismic response of RC structures

Mohammad Mahdi Fallah, Ahmad Shooshtari, Hamid Reza Ronagh

    Research output: Contribution to journalArticlepeer-review

    Abstract

    It is reasonable to assume that reinforced concrete (RC) structures enter the nonlinear range of response during a severe ground motion. Numerical analysis to predict the behaviour therefore must allow for the presence of nonlinear deformations if an accurate estimate of seismic response is aimed. Among the factors contributing to inelastic deformations, the influence of the degradation of the bond slip phenomenon is important. Any rebar slip generates an additional rotation at the end regions of structural members which are not accounted for in a conventional analysis. Although these deformations could affect the seismic response of RC structures considerably, they are often neglected due to the unavailability of suitable models. In this paper, the seismic response of two types of RC structures, designed according to the Iranian concrete code (ABA) and the Iranian seismic code (2800), are evaluated using nonlinear dynamic and static analyses. The investigation is performed using nonlinear dynamic and static pushover analysis considering the deformations due to anchorage slip. The nonlinear analysis results confirm that bond slip significantly influences the seismic behavior of RC structure leading to an increase of lateral deformations by up to 30% depending on the height of building. The outcomes also identify important parameters affecting the extent of this influence.
    Original languageEnglish
    Pages (from-to)695-711
    Number of pages17
    JournalStructural Engineering and Mechanics
    Volume46
    Issue number5
    DOIs
    Publication statusPublished - 2013

    Keywords

    • concrete
    • concrete deformation
    • earthquakes
    • reinforced concrete

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