Structural Engineering and Mechanics

Volume 77, Number 2, 2021, pages 273-291

DOI: 10.12989/sem.2021.77.2.273

Strength assessment of RC deep beams and corbels

Adrija D., Indu Geevar, Devdas Menon and Meher Prasad

Abstract

The strut-and-tie method (STM) has been widely accepted and used as a rational approach for the design of disturbed regions ('D' regions) of reinforced concrete members such as in corbels and deep beams, where traditional flexure theory does not apply. This paper evaluates the applicability of the equilibrium based STM in strength predictions of deep beams (with rectangular and circular cross-section) and corbels using the available experiments in literature. STM is found to give fairly good results for corbel and deep beams. The failure modes of these deep members are also studied, and an optimum amount of distribution reinforcement is suggested to eliminate the premature diagonal splitting failure. A comparison with existing empirical and semi empirical methods also show that STM gives more reliable results. The nonlinear finite element analysis (NLFEA) of 50 deep beams and 20 corbels could capture the complete behaviour of deep members including crack pattern, failure load and failure load accurately.

Key Words

strut-and-tie; deep beam; corbel; disturbed region; nonlinear, shear

Address

Adrija D.: Atkins, Bangalore, India Indu Geevar: Department of Civil Engineering, Rajagiri School of Engineering and Technology, Kochi, India Devdas Menon and Meher Prasad: Department of Civil Engineering, IIT Madras, Chennai, India