Computers and Concrete

Volume 17, Number 2, 2016, pages 157-172

DOI: 10.12989/cac.2016.17.2.157

Deformation-based Strut-and-Tie Model for reinforced concrete columns subject to lateral loading

Sung-Gul Hong, Soo-Gon Lee, Seongwon Hong and Thomas H.K. Kang

Abstract

This paper presents a Strut-and-Tie Model for reinforced concrete (RC) columns subject to lateral loading. The proposed model is based on the loading path for the post-yield state, and the geometries of struts and tie are determined by the stress field of post-yield state. The analysis procedure of the Strut-and-Tie Model is that 1) the shear force and displacement at the initial yield state are calculated and 2) the relationship between the additional shear force and the deformation is determined by modifying the geometry of the longitudinal strut until the ultimate limit state. To validate the developed model, the ultimate strength and associated deformation obtained by experimental results are compared with the values predicted by the model. Good agreements between the proposed model and the experimental data are observed.

Key Words

deformation; lateral loading; reinforced concrete column; strut-and-time model; ultimate strength

Address

Sung-Gul Hong, Seongwon Hong and Thomas H.K. Kang: 1Department of Architecture and Architectural Engineering, Seoul National University,1 Gwanak-ro, Gwanak-gu, Seoul 08826, Korea Soo-Gon Lee: Samsung C&T, 14 Seocho-daero 74-gil, Seocho-gu, Seoul 06620, Korea