Steel-free hybrid reinforcing bars for concrete structures

Author:

Teng Jin-Guang12ORCID,Zhang Bing13,Zhang Shishun4,Fu Bing5

Affiliation:

1. Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong, China

2. Department of Ocean Science and Engineering, Southern University of Science and Technology, Shenzhen, China

3. College of Civil Engineering, Nanjing Tech University, Nanjing, China

4. School of Civil Engineering and Mechanics, Huazhong University of Science and Technology, Wuhan, China

5. School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou, China

Abstract

Extensive research has been conducted on the replacement of steel rebars with fibre-reinforced polymer rebars to eliminate the steel corrosion problem in conventional steel bar–reinforced concrete structures. However, as the performance of fibre-reinforced polymer rebars is substantially inferior in compression (due to issues such as fibre micro-buckling) than in tension, their use in concrete columns is generally not recommended; this poses a significant challenge when a steel-free structure is needed. This article presents a novel steel-free hybrid rebar developed at The Hong Kong Polytechnic University that overcomes the above-mentioned problem. Such a hybrid rebar typically consists of a central fibre-reinforced polymer rebar, an external fibre-reinforced polymer confining tube and an annular layer of high-strength cementitious material such as ultrahigh-performance concrete. To demonstrate the performance of these hybrid rebars, results from a series of preliminary tests and associated modelling work are presented in the article. These results indicate that (1) the fibre-reinforced polymer rebar at the centre is well supported against bar buckling and fibre micro-buckling, (2) the compressive strength of the fibre-reinforced polymer material can be fully mobilized and (3) the stress–strain response of hybrid rebars can be designed to resemble an elastic–plastic response with some post-yielding hardening.

Funder

The Hong Kong Polytechnic University

Hong Kong Research Grants Council

Publisher

SAGE Publications

Subject

Building and Construction,Civil and Structural Engineering

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