Abstract
In order to research the flexural behavior of shape memory alloy (SMA)-reinforced seawater sea-sand concrete (SWSSC) beams and improve their self-healing ability, three SMA SWSSC beams and one anti-corrosive steel bar SWSSC beam were designed. The influence of the reinforcement ratio, strength grade of SWSSC and type of reinforcement on the flexural performance of the beam were considered. The failure process, maximum crack width, mid-span deflection, displacement ductility and stiffness degradation of beams were studied by cyclic loading tests. The test results showed that the number of cracks in SMA-reinforced beams were significantly smaller than that in anti-corrosive-reinforced beams, and the crack width and mid-span deflection recovery effect were better after unloading. However, the effect of increasing the SMA reinforcement ratio on crack recovery was not obvious. The increase in SMA reinforcement ratio and the strength grade of SWSSC can significantly improve the bearing capacity of the beam and the stiffness, but the stiffness degradation rate decreased. Moreover, the ductility of concrete beams with SMA bars was significantly increased.
Funder
National Natural Science Foundation of China
the Program for Innovative Research Team (in Science and Technology) in University of Henan Province
Subject
Building and Construction,Civil and Structural Engineering,Architecture
Reference47 articles.
1. Use of sea-sand and seawater in concrete construction: Current status and future opportunities;Xiao;Constr. Build. Mater.,2017
2. Durability of fiber reinforced polymer (FRP) in simulated seawater sea sand concrete (SWSSC) environment;Guo;Corros. Sci.,2018
3. Guo, F., Al-Saadi, S., Singh, R.R., and Zhao, X. (2022). Durability of Fibre Reinforced Polymers in Exposure to Dual Environment of Seawater Sea Sand Concrete and Seawater. Materials, 15.
4. Behavior of FRP rods under uniaxial tensile strength with multiple materials as an alternative to steel rebar;Attia;Case Stud. Constr. Mater.,2022
5. Review of the Properties of Fiber-Reinforced Polymer-Reinforced Seawater-Sea Sand Concrete;Wang;J. Mater. Civil Eng.,2021
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