Glass Fibers Reinforced Concrete: Overview on Mechanical, Durability and Microstructure Analysis
Бетон, армированный стекловолокном: обзор механических свойств, долговечности и микроструктурного анализа
2022-07-22
SCID: 54.1/5vdbx63p
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durabilityglass fiber-reinforced concretemechanical propertiesscanning electron microscopyultrasonic pulse velocity
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Abstract (AI)
Prior studies in the literature show promising results regarding the improvements in strength and durability of concrete upon incorporation of glass fibers into concrete formulations. However, the knowledge regarding glass fiber usage in concrete is scattered. Moreover, this makes it challenging to understand the behavior of glass fiber-reinforced concrete. Therefore, a detailed review is required on glass fiber-reinforced concrete. This paper provides a compressive analysis of glass fiber-reinforced composites. All-important properties of concrete such as flowability, compressive, flexural, tensile strength and modulus of elasticity were presented in this review article. Furthermore, durability aspects such as chloride ion penetration, water absorption, ultrasonic pulse velocity (UPV) and acid resistance were also considered. Finally, the bond strength of the fiber and cement paste was examined via scanning electron microscopy. Results indicate that glass fibers improved concrete's strength and durability but decreased the concrete's flowability. Higher glass fiber doses slightly decreased the mechanical performance of concrete due to lack of workability. The typical optimum dose is recommended at 2.0%. However, a higher dose of plasticizer was recommended for a higher dose of glass fiber (beyond 2.0%). The review also identifies research gaps that should be addressed in future studies.
Key Findings
1
A typical optimum glass fiber dose is recommended at 2.0% for balanced performance.
2
Durability improvements with glass fibers include reduced chloride ion penetration, lower water absorption, improved UPV, and enhanced acid resistance.
3
For glass fiber doses beyond 2.0%, a higher dose of plasticizer is recommended to restore workability.
4
Glass fibers reduce concrete flowability, with higher fiber doses causing greater decreases in workability.
5
Incorporating glass fibers into concrete improves strength and durability compared to plain concrete.
6
Mechanical performance slightly decreases at higher glass fiber doses due to lack of workability.
7
Scanning electron microscopy shows the fiber–cement paste bond was examined to assess microstructure and bond strength.
8
The literature on glass fiber–reinforced concrete is scattered, and the review identifies research gaps for future studies.
Research Object
Glass fiber-reinforced concrete
Research Subject
Mechanical properties, durability characteristics, and microstructure/bond behavior of concrete containing glass fibers (including flowability, compressive/flexural/tensile strength, modulus of elasticity, chloride penetration, water absorption, UPV, acid resistance, and fiber–paste bond via SEM)
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2022-07-22
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