Load-Bearing Capacity of Bended FRP Reinforcement with Various Anchorage Lengths

Author:

Lagin Juraj1,Girgle Frantisek1,Kostiha Vojtech1,Stepanek Petr1

Affiliation:

1. Brno University of Technology

Abstract

The research builds upon the analysis of bent glass-fibre-reinforced-polymer reinforcement. The presented work focuses on examining the influence of anchor length on the overall tensile strength of bent FRP rebar. In general, to ensure secure anchoring of the reinforcement in concrete, it is necessary to determine a specific length of the straight section of the rebar beyond the bend, which prevents the reinforcement from being pulled out of the concrete. A total of 27 pieces of bent rebar were tested in the research and divided into four subgroups based on the anchor length beyond the bend. The reference value of the load-carrying capacity of the straight reinforcement was tested on four experimental samples. The research results confirmed that the reduction in tensile strength depends on the anchor length and suggest that the minimum anchorage length stated in the literature should be sufficient; exceeding it does not lead to a significant increase in the load-carrying capacity of the rebar. The research findings expand the Czech Republic’s design knowledge of FRP reinforcement and facilitate the resolution of subsequent phases of the project.

Publisher

Trans Tech Publications, Ltd.

Reference8 articles.

1. JSCE: Recommendation for Design and Construction of Concrete Structures Using Continuous Fiber Reinforcing Materials. 1997 ed. Japan: Research Committee on Continuous Fiber Reinforcing Materials, Japan Society of Civil Engineers; 1997.

2. Bend Strength of FRP Bars: Experimental Investigation and Bond Modeling;Imjai;Journal of Materials in Civil Engineering

3. America Committee Institute. (2015). ACI 440.1R-15: Guide for the Design and Construction of Structural Concrete Reinforced With Fiber-Reinforced Polymer (FRP) Bars.

4. The effect of the bent of FRP rebar on its short-term mechanical properties;Lagiň;Journal of Physics: Conference Series

5. America Committee Institute. (2012). ACI PRC-440.3-12 Guide Test Methods for Fiber-Reinforced Polymers (FRPs) for Reinforcing or Strengthening Concrete Structures.

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