Prediction of Ultimate Capacity of Concrete Columns Reinforced with FRP Bars

Author:

Korentz Jacek1ORCID,Czarnecki Witold1

Affiliation:

1. Institute of Civil Engineering, University of Zielona Góra, Prof. Z. Szafrana 1, 65-516 Zielona Góra, Poland

Abstract

FRP bars are used in concrete structures as an alternative to steel bars as they have many advantages such as high tensile strength, high strength-to-weight ratio, electromagnetic neutrality, lightweight and no corrosion. There is a perceived lack of standard regulations for the design of concrete columns with FRP reinforcement, e.g., in Eurocode 2. This paper describes a procedure for predicting the bearing capacity of concrete columns with FRP reinforcement based on the interaction of axial force and bending moment, which was developed on the basis of existing design recommendations and standards. It was shown that the bearing capacity of eccentrically loaded RC sections depends on two parameters, which are the mechanical reinforcement ratio ω and the location of the reinforcement in the cross-section expressed by the β factor. The analyses carried out showed the existence of a singularity in the n–m interaction curve indicating the fact that in a certain loaded range, the curve is concave, and more it was shown that the balance failure point for sections with FRP reinforcement takes place for eccentric tension. A simple procedure for calculating the required reinforcement from any FRP bars in concrete columns was also proposed. Nomograms developed from n–m interaction curves provide for the accurate and rational design of FRP reinforcement in columns.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference41 articles.

1. (2007). FRP Reinforcement in RC Structures, fib. Available online: https://www.fib-international.org/publications/fib-bulletins/frp-reinforcement-in-rc-structures-115-detail.html#Ch01.

2. (2003). Guide for the Design and Construction of Concrete Reinforced with FRB Bars. ACI Committe 440 (Standard No. ACI 440.1R-03).

3. (2014). Building Code Requirements for Structural Concrete and Commentary (Standard No. ACI 318-14).

4. (2012). Design and Construction of Building Components with Fiber-Reinforced Polymers (Standard No. CSA S806–12).

5. (2006). Guide for the Design and Construction of Concrete Structures Reinforced with Fiber-Reinforced Polymer Bars (Standard No. CNR-DT-203/2006).

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