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    Reinforcing material-C
    Reinforcing material-C
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    • Reinforcing material-C
    • Reinforcing material-C

    Reinforcing material-C

    Strong tensile strength, the strength of the rod is twice that of threaded steel bars of the same diameter, but the quality is only 1/4 of the steel bars. 

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    Product Introduction

    High bearing capacity: Strong tensile strength, the strength of the rod is twice that of threaded steel bars of the same diameter, but the quality is only 1/4 of the steel bars. 
    Elastic modulus stability: about 1/3 to 2/5 of steel reinforcement. 
    Electric thermal insulation: The coefficient of thermal expansion is closer to cement than steel bars. 
    Corrosion resistance: Fiberglass reinforcement will not corrode and can withstand corrosive media such as water and salt in humid environments, making the structure more durable. 
    Good thermal performance: Glass fiber reinforcement has excellent thermal diffusion performance, is not easily deformed by heat, and can maintain the stability of the structure 
    Easy to construct: Fiberglass reinforcement is lightweight, has good ductility, is easy to cut and install, and can improve construction efficiency.

    Performance Comparison Table

    Theoretical Weight Table Of Glass Fiber Reinforcement

    DIAMETER WEIGHT PER METER METERS PER TON TENSILE STRENGTH (MPa) SHEAR STRENGTH (MPa) LIMITING STRAIN ELASTIC MOLD (GPa)
    Φ6 0.065kg/m 15385m ≥650 ≥110 ≥1.2 ≥40
    Φ8 0.105kg/m 9525m ≥650 ≥110 ≥1.2 ≥40
    Φ10 0.165kg/m 6060m ≥650 ≥110 ≥1.2 ≥40
    Φ12 0.24kg/m 4167m ≥650 ≥110 ≥1.2 ≥40
    Φ14 0.28kg/m 3572m ≥650 ≥110 ≥1.2 ≥40
    Φ16 0.37kg/m 2702m ≥600 ≥110 ≥1.2 ≥40
    Φ18 0.46kg/m 2713m ≥600 ≥110 ≥1.2 ≥40
    Φ20 0.56kg/m 1786m ≥600 ≥110 ≥1.2 ≥40
    Φ22 0.70kg/m 1429m ≥600 ≥110 ≥1.2 ≥40
    Φ25 0.95kg/m 1053m ≥600 ≥110 ≥1.2 ≥40
    Φ28 1.22kg/m 820m ≥600 ≥110 ≥1.2 ≥40
    Φ30 1.35kg/m 740m ≥600 ≥110 ≥1.2 ≥40
    Φ32 1.51kg/m 663m ≥600 ≥110 ≥1.2 ≥40
    Φ36 2.04kg/m 490m ≥600 ≥110 ≥1.2 ≥40
    Φ38 2.36kg/m 424m ≥600 ≥110 ≥1.2 ≥40

    Execution standard: GB/T26743-2011 "Fiber Reinforced Composite Reinforcement for Structural Engineering"

    List Of Test Parameters For Steel Bar Testing

    REINFORCING BAR TENSILE TEST ELONGATION TEST
    SERIAL DIAMETER NUMBER THEORETICAL WEIGHT(Kg/m) YIELD STRENGTH(MPa) ENSILE STRENGTH(MPa) ELONGATION TEST
    1 Φ6 Grade I Q235 0.222 235 370 25
    2 Φ8 Grade I Q235 0.394 235 370 25
    3 Φ10 Grade I Q235 0.619 235 370 25
    4 Φ16 Grade I Q235 1.580 235 370 25
    5 Φ20 Grade I Q235 2.470 235 370 25
    6 Φ32 Grade I Q235 6.310 235 370 25
    7 Φ12 HRB335 0.888 335 490 16
    8 Φ14 HRB335 1.209 335 490 16
    9 Φ16 HRB335 1.580 335 490 16
    10 Φ18 HRB335 1.980 335 490 16
    11 Φ20 HRB335 2.470 335 490 16
    12 Φ22 HRB335 2.980 335 490 16
    13 Φ25 HRB335 3.850 335 490 16
    14 Φ28 HRB335 4.830 335 490 16
    15 Φ32 HRB335 6.310 335 490 16

    Performance Comparison Table

      CARBON FIBER COMPOSITE TENDONS(CFB) BASALT FIBER REINFORCED BARS(BFB) GLASS FIBER COMPOSITE BARS(GFB)
    DENSITY(G/cm2) 1.50~1.60 1.90~2.10 1.90~2.10
    TENSILE STRENGTH(MPa) 1800 800 600
    ELASTIC MODULUS(GPa) 120 50 40
    ELONGATION AT BREAK(%) 1.5 1.6 1.5

    Execution standard: GB/T26743-2011 "Fiber Reinforced Composite Reinforcement for Structural Engineering"

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