一、Description
Basalt fiber composite rebar is formed by pultrusion process with basalt fiber as reinforced material, combined with epoxy resin(ER), vinyl resin(VR) and unsaturated polyester(UPE) resin and matrix such as filler and curing agent.
二、Forming Process
Basalt fiber roving as the main raw material, combined with epoxy resin(ER), vinyl resin(VR), unsaturated polyester(UPE) and other resins and fillers, curing agents, substrates, through thermoforming die, the basalt fiber bar is extruded under a certain tension with impregnated untwisted roving bundle.
三、Specifications and Performance
四、Application
Seismic observation stations, harbour wharf protection works and buildings, subway stations, bridges, non-magnetic or electromagnetic concrete buildings
Prestressed concrete highway, anticorrosion chemical industry, floor slab, chemical storage tank, underground engineering
Magnetic resonance imaging facility foundation, communication building, electronic equipment factory building.
Concrete slabs for guide rails of nuclear fusion buildings and maglev railways.
Telecom transmission tower, TV station bracket, optical fiber and cable strengthening core
五、Product advantage
The tensile strength is high, which is more than 3 times that of ordinary steel bars of the same specification.
Excellent corrosion resistance (unmatched by any other fiber product).
The density of fiber composite bars is only 2.0g/ cm3, 1/4 of that of ordinary steel bars.
The thermal expansion coefficient of fiber composite bars is similar to that of concrete, and there is no large thermal stress between them.
Standard bends and other shapes can be prefabricated.
Environmental protection: for every ton of basalt fiber composite bars used, the carbon emissions of 5.24tce of standard coal can be saved.
六.Pictures