Bending-shear interaction domains for externally prestressed concrete girders

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Abstract

In prestressed concrete structures, the evaluation of the safety level is generally carried out by separating the bending moment strength and the shear force capacity. Actually interaction between bending moment (M) and shear force (V) can have significant consequences on evaluations in service life, especially when the ultimate limit state (ULS) is considered. In this paper, the M-V interaction is addressed for prestressed concrete girders, in the cases of both bonded and unbonded prestressing tendons. It can be demonstrated, by drawing the interaction domains (M-V), that a significant reduction of the safety level has to be considered when shear force is evaluated together with bendingmoment on the ULS of the cross-section, especially for external prestressing in concrete T-shaped or box sections of bridge girders. Interaction domains allow designers to evaluate and optimize reinforcement ratios, geometric properties of the beam, and effects of shear on the ultimate state. An analytical model, based on the stress field theory, is developedandproposed in this paper.Anumerical example isdevelopedandinteractiondomains are givenfor anexample of a box section with variation in reinforcement ratio and tendon slope. A validation of the presented model is given, by comparing experimental data in the literature with results found using the proposed analytical approach. Copyright © 2013 A. Recupero and M. F. Granata.

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Recupero, A., & Granata, M. F. (2013). Bending-shear interaction domains for externally prestressed concrete girders. Advances in Civil Engineering, 2013. https://doi.org/10.1155/2013/580646

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