Strength of eccentrically loaded slender columns made with high-strength concrete

Author:

Shaaban Ibrahim G.1ORCID,Abdel-Rahman Gamal T.2,Said Mohamed2,Abdel-Karim Mahmoud3,Adesina Peter4

Affiliation:

1. Senior Lecturer, Civil Engineering and Built Environment, School of Computing and Engineering, University of West London, UK (corresponding author: )

2. Associate Professor, Civil Engineering Department, Faculty of Engineering, Shoubra, Benha University, Egypt

3. Assistant Lecturer, Civil Engineering Department, Faculty of Engineering, Shoubra, Benha University, Egypt

4. PhD student, Department of Civil and Environmental Engineering, Imperial College, London, UK

Abstract

A non-linear finite-element analysis model was developed to predict the strength of high-strength concrete (HSC) slender columns. The studied parameters were compressive strength, load eccentricity, slenderness ratio and longitudinal and transverse reinforcement ratio. The model results were verified by comparison with analytical results and experimental results reported in the literature. A parametric study was also carried out by comparing the model results with those obtained using design codes, which were predominantly based on data derived from tests on normal-strength concrete. The model proved to be a suitable tool for the strength analysis of slender HSC columns. ACI 318-14 gave the most conservative predictions of the load-carrying capacity of centrally loaded columns but was close to the model results for eccentric loading. The procedures specified by BS EN 1992-1-1:2004 resulted in a significant underestimation of the load-carrying capacity of slender columns, particularly for eccentric loading, and this increased with greater slenderness ratios. This is probably because the confinement index taken into consideration in the software was not consistent, ranging from 0·03% to 5·14%. It was concluded that special clauses need to be introduced in the design codes for the accurate design of HSC columns.

Publisher

Thomas Telford Ltd.

Subject

Building and Construction,Civil and Structural Engineering

Reference28 articles.

1. Abdel-Karim M (2016) Behaviour of Confined HSC Columns Under Centric and Eccentric Loading. MSc thesis, Benha University, Cairo, Egypt.

2. Proposed model for strength analysis of HSC eccentrically loaded slender columns

3. ACI (American Concrete Institute) (2014) ACI 318-14: Building code requirements for reinforced concrete and commentary (ACI 318R-14). ACI, Farmington Hills, MI, USA.

4. Simplified Design Procedure for Reinforced Concrete Columns Based on Equivalent Column Concept

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