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Fiberglass Reinforced Plastic Anti-Corrosion Engineering

Chemical corrosion resistance, excellent physical properties, aging resistance, flame retardant, low thermal conductivity, flexible construction methods.

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  • Product Description
  • Product Parameters
  • FRP anti-corrosion is a highly technical project, and its construction steps include substrate treatment, spraying the base adhesive, creating the anti-corrosion reinforcement layer, creating the impermeable layer, and the outer layer, etc. Among them, substrate treatment is key, requiring the substrate surface to be flat, solid, free of sand, peeling, cracks, and other phenomena, while controlling the construction environment, such as temperature and humidity. When spraying the adhesive, it is necessary to control the amount and viscosity to ensure even spraying and to prevent dripping and missed coating. When creating the anti-corrosion reinforcement layer, the fabric layering method should be used, and staggered overlaps should be noted. Finally, when creating the impermeable layer and outer layer, the surface must be smooth and flat to meet the required protection level.

    In addition, FRP anti-corrosion also requires attention to some detail issues. For example, when using fine quartz sand, it is necessary to control the amount and particle size and to enhance the anti-slip function. When creating the transition bonding layer, it is important to choose suitable bonding materials and control the thickness and number of coats. During the construction process, it is also necessary to prevent secondary pollution, such as timely cleaning of the construction site.

     

    FRP anti-corrosion

     

    FRP anti-corrosion

     

    FRP anti-corrosion

     

    FRP anti-corrosion

     

     

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