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Basalt fiber-reinforced polymer/composite rebar BFRP basalt rebar
Basalt fiber-reinforced polymer/composite rebar BFRP basalt rebar

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1.High tensile strength
2.Excellent corrosion resistance
3.Low density
4.No conductivity
5.Temperature-resistant

 

                 Basalt fiber-reinforced  polymer/composite rebar

                          BFRP basalt rebar

BFRP basalt rebar / Basalt fiber composite bar is high strength basalt fiber and epoxy vinyl by online pultrusion, winding, surface coating and composite molding, continuous production of new building materials with high strength and excellent corrosion resistance. Basalt Fiber Reinforced corrosive environment can significantly prolong the life of concrete structures in the cement, as compared with traditional reinforced concrete structure with excellent mechanical, physical and chemical properties.

    1.high tensile strength steel with the strength of normal size more than 2 times.

    2. excellent corrosion resistance (any other fiber products is unmatched).

      Corrosion-resistance:will not rust, and are impervious to the action of salt ions, chemicals, and the alkalinity inherent in concrete.High tensile strenghth:better than steel bar.(480-1000MPa).
    3. density, the density of fiber reinforced composite rebar is  1.9-2.1g/cm3,only general about 1 / 4. 

    4. fiber reinforced concrete thermal expansion coefficient similar between the two will not produce a large thermal stress.

    5. through the wave of good performance, not shield.

    6.not conductive non-thermal.                               

    7. can be pre-standard curved and other shapes

Features:
Non-magnetic, electrical insulation, high strength, high elastic modulus, thermal expansion coefficient similar to concrete. High resistance to chemical corrosion, acid, alkali, salt.

 

 Application example:
1, seismic observation station, the harbor pier protection works and buildings of all kinds of thread (sand) bars;
2, subway stations, bridges, non-magnetic or electromagnetic nature of concrete structures, prestressed concrete roads, anti-corrosion chemicals, to panels, chemical tanks, underground engineering, the basis of magnetic resonance imaging facilities, such as construction of the various threads (blast) reinforcement (continuous reinforcement process);
3, coal mines, tunnels bolt ,roads, slope, etc. support the permanent anchor;
4, communication building, electronic equipment, factory, building nuclear fusion, magnetic levitation railway track concrete slab, telecommunications transmission towers, television stand, fiber optic cable to strengthen the core.

5, port terminals, dams and other water conservancy and hydropower facilities;
6, housing construction, highway and bridge construction and reinforcement;
7, wet areas and areas with harsh environments such as acid-base bridge, tunnel and other reinforced concrete structures;

  

Successful case

1.The freeway between Shijiazhuang city and Taiyuan city in China

2.Earthquake monitoring station in Lanzhou city in China

3.The No.4 metro of Beijing in China

4.The East Fuxing Tunnel and light rail station of Yishan in Shanghai in China

5.Some electrolyse tank factories in China

6.International markets such as America, Europe, Middle East and Northeast Asia

 

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