Glass fiber reinforced polymer (GFRP) rebar the major advantages of being a lightweight and corrosion-free alternative to steel reinforcement. GFRP rebar offers high tensile strength, stiffness-to-weight ratio, solid resistance to corrosive chemicals, electromagnetic neutrality, excellent fatigue properties, and control over thermal expansion.
Products Description:
GFRP (Glass Fibre Reinforced Polymer) rebar, commonly referred to as Fibreglass reinforcement, is a high tensile strength alternative to steel reinforcement. GFRP is made by weaving high quality glass fibres into a fabric before being impregnated with polymers and formed into a round bar. The key overwhelming benefit of GFRP reinforcing bar is it’s resistance to corrosion. Rust is a major risk to steel reinforcing in concrete structures located in high corrosion environments such as near saltwater or chemicals. Fibreglass reinforcing is highly resistant to corrosion and can extend the lifespan of concrete structures enormously.
Feature:
◆ Light Weight
◆ High Tensile Strength
◆ Corrosion Resistance
◆ Anti-static Conditioning
◆ Excellent cuttability
◆ No-conductive(electric, thermal)
◆ Flame Resistance
◆ Continuous threaded profile
◆ Flexibility
◆ No electrical conductivity
◆ Wide range of various dimensions
| Product Specificatin | |||
| Specification | yft100-10 | Name | GFRP Rebar |
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| Item | Unit | Permissible Deviation | Standard Parameter |
| Outer Diameter (Da) | mm | ±0.5 | 10 |
| Effective Diameter (Dd) | mm | ±0.5 | 9 |
| Rod Length (L) | mm | ±10 | |
| Active Section | mm² | — | 64 |
| Weight | g/m | ±5 | 150 |
| Fiberglass Content | % | ±5 | 80 |
| Density | g/cm³ | ≥ | 2 |
| Ultimate Load-bearing | kN | ≥ | 60 |
| Ultimate Tensile Strength | MPa | ≥ | 1000 |
| Shear Strength | MPa | ≥ | 150 |
| Elastic Modulus | GPa | ≥ | 145 |
| Ultimate Strain | % | ≥ | 1.2 |
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