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Basalt Fiber-Reinforced Polymer-Confined Geopolymer Concrete
by
Hadi, Muhammad N. S
, Ahmad, Junaid
, Yu, Tao
in
Aluminum
/ Analysis
/ Axial strain
/ Axial stress
/ Basalt
/ Carbon
/ Caustic soda
/ Cement
/ Composition
/ Compressive properties
/ Concrete
/ Confinement
/ Construction industry
/ Cylinders
/ Discount coupons
/ Ductility
/ Failure modes
/ Fiber reinforced concretes
/ Fiber reinforced polymers
/ Fibrous composites
/ Geopolymers
/ Glass fiber reinforced plastics
/ Investigations
/ Mechanical properties
/ Modulus of elasticity
/ Polymers
/ Portland cement
/ Portland cements
/ Sodium
/ Strain gauges
/ Stress-strain curves
/ Stress-strain relationships
/ Testing
2021
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Basalt Fiber-Reinforced Polymer-Confined Geopolymer Concrete
by
Hadi, Muhammad N. S
, Ahmad, Junaid
, Yu, Tao
in
Aluminum
/ Analysis
/ Axial strain
/ Axial stress
/ Basalt
/ Carbon
/ Caustic soda
/ Cement
/ Composition
/ Compressive properties
/ Concrete
/ Confinement
/ Construction industry
/ Cylinders
/ Discount coupons
/ Ductility
/ Failure modes
/ Fiber reinforced concretes
/ Fiber reinforced polymers
/ Fibrous composites
/ Geopolymers
/ Glass fiber reinforced plastics
/ Investigations
/ Mechanical properties
/ Modulus of elasticity
/ Polymers
/ Portland cement
/ Portland cements
/ Sodium
/ Strain gauges
/ Stress-strain curves
/ Stress-strain relationships
/ Testing
2021
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Basalt Fiber-Reinforced Polymer-Confined Geopolymer Concrete
by
Hadi, Muhammad N. S
, Ahmad, Junaid
, Yu, Tao
in
Aluminum
/ Analysis
/ Axial strain
/ Axial stress
/ Basalt
/ Carbon
/ Caustic soda
/ Cement
/ Composition
/ Compressive properties
/ Concrete
/ Confinement
/ Construction industry
/ Cylinders
/ Discount coupons
/ Ductility
/ Failure modes
/ Fiber reinforced concretes
/ Fiber reinforced polymers
/ Fibrous composites
/ Geopolymers
/ Glass fiber reinforced plastics
/ Investigations
/ Mechanical properties
/ Modulus of elasticity
/ Polymers
/ Portland cement
/ Portland cements
/ Sodium
/ Strain gauges
/ Stress-strain curves
/ Stress-strain relationships
/ Testing
2021
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Basalt Fiber-Reinforced Polymer-Confined Geopolymer Concrete
Journal Article
Basalt Fiber-Reinforced Polymer-Confined Geopolymer Concrete
2021
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Overview
This paper investigates the behavior of basalt fiber-reinforced polymer (BFRP) confinement on geopolymer concrete (GPC) cylinders under axial monotonic compression. Results were compared with glass fiber-reinforced polymer (GFRP) confinement on GPC cylinders. Effects of confinement on failure mode, stressstrain behavior, peak axial compressive stress, and ultimate axial strain of the tested specimens were ascertained and discussed. It was observed that the confinement of BFRP is more effective than the GFRP due to the higher elastic modulus and larger rupture strain of the former. Results were also compared with the existing stress-strain models for FRP confined ordinary portland cement concrete (OPC). It was observed that the existing stress-strain models generally cannot provide accurate predictions of the stressstrain behavior of FRP confined GPC. It was concluded that BFRP confined GPC can be considered as a sustainable alternative to the FRP confined OPC. Keywords: basalt; basalt fiber-reinforced polymer (BFRP); compressive behavior; confined geopolymer concrete; geopolymer concrete; glass fiber-reinforced polymer (GFRP); stress-strain model.
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