Compressive Performance of Longitudinal Steel-FRP Composite Bars in Concrete Cylinders Confined by Different Type of FRP Composites

Author:

Duan Maojun1ORCID,Tang Yu1ORCID,Wang Yusheng1,Wei Yang1ORCID,Wang Jiaqing1ORCID

Affiliation:

1. College of Civil Engineering, Nanjing Forestry University, Nanjing 210037, China

Abstract

This paper presents an experimental study on the compressive performance of longitudinal steel-fiber-reinforced polymer composite bars (SFCBs) in concrete cylinders confined by different type of fiber-reinforced polymer (FRP) composites. Three types of concrete cylinders reinforced with (or without) longitudinal SFCBs and different transverse FRP confinements were tested under monotonic compression. The results showed that the post-yield stiffness of SFCBs is higher when confined with high elastic modulus carbon fiber-reinforced polymer (CFRP) composite than with low elastic modulus basalt fiber-reinforced polymer (BFRP) composite. Decreasing confinement spacing did not significantly improve the compressive strength of SFCBs in concrete cylinders. The compressive failure strain of SFCBs could possibly reach 88% of its tensile peak strain in concrete cylinders confined by CFRP sheets, which is significantly higher than the value (around 50%) in previous studies. Existing design equations, which applied a strength reduction factor or a maximum compressive strain of concrete to consider the compressive contributions of SFCBs in concrete members, underestimate the load-carrying capacity of SFCB-reinforced concrete cylinders. The design equation that considers the actual compressive stress of SFCBs gives the most accurate prediction; however, its applicability and accuracy need to be verified with more experimental data.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference37 articles.

1. ASCE (2010). Minimum Design Loads for Buildings and Other Structures, American Society of Civil Engineers.

2. (2011). Guide Specifications for LRFD Seismic Bridge Design (Standard No. LRFDSEIS-2).

3. Calvi, G., Priestley, M., and Kowalsky, M. (2007, January 5–7). Displacement based seismic design of structures. Proceedings of the New Zealand Conference on Earthquake Engineering, Singapore.

4. Priestley, M.N., Seible, F., and Calvi, G.M. (1996). Seismic Design and Retrofit of Bridges, John Wiley & Sons.

5. Performance-based seismic response of frame structures including residual deformations part I: Single-degree of freedom systems;Christopoulos;J. Earthq. Eng.,2003

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