Cosmetic Carbon Fibre

Products that are specifically designed and formulated for Cosmetic Carbon Fibre.

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  • EP402GREEN

    GELCOAT EP 402 Green is a two component, mineral filled, brushable, room temperature curing surface coat. GELCOAT EP 402 Green is designed for use in patterns, models, gauges, negatives and electro forming tools. Learn More
  • EP4093

    ALCHEMIX GELCOAT EP 4093 is a colourless, two component, brushable, room temperature curing surface coat. GELCOAT EP 4093 is designed for use in vacuum forming moulds, applications requiring high heat resistance and negatives where very fine surface finishes are required. Learn More
  • EP502

    ALCHEMIX EP 502 is a very low viscosity, laminating and casting resin, with a choice of hardeners. When used for laminating, the low viscosity of ALCHEMIX EP 502 allows excellent wetting of fibres and fillers. ALCHEMIX EP 502 is formulated for use in backfilling compositions using mineral or metallic fillers and for laminates requiring good flexural strength. Learn More
  • EP519 / H50

    ALCHEMIX EP 519 / H50 is a general purpose laminating resin for laminates requiring good flexural strength. The low viscosity of ALCHEMIX EP 519 / H50 allows excellent wetting of fibres, such as carbon fibre. Learn More
  • EP5241

    ALCHEMIX EP 5241 is an epoxy resin specially designed for use in industrial applications requiring a strong, durable coating where low colour and high UV resistance is required. ALCHEMIX EP 5241 has excellent water resistance, chemical resistance, mechanical properties and excellent adhesion to a variety of substrates. Learn More
  • EP5752

    ALCHEMIX EP 5752 is an ambient temperature cure epoxy system, exhibiting outstanding mechanical and thermal properties. The system is formulated to produce high performance composite parts using a wide variety of fibre systems, including carbon fibre, glass fibre and aramid fibre. The system has been formulated to ensure efficient wetting of fibres, eliminating air entrapment, dry spots and porosity in the composite part. Three hardeners are available, allowing the working time and cure speed to be adjusted. Alternative hardeners for specific applications are available. Learn More
  • EP5752 - H105

    ALCHEMIX EP 5752 - H105 is an epoxy system, exhibiting excellent through cure, even at low temperatures. ALCHEMIX EP 5752 - H105 exhibits outstanding mechanical and thermal properties. The system is formulated to produce high performance composite parts using a wide variety of fibre systems, including carbon fibre, glass fibre and aramid fibre. The system has been formulated to ensure efficient wetting of fibres, eliminating air entrapment, dry spots and porosity in the composite part. Learn More
  • EP5752 - H5752HT

    ALCHEMIX EP 5752 - H5752HT is an epoxy laminating resin exhibiting high temperature resistance and excellent mechanical properties. ALCHEMIX EP 5752 - H5752HT is ideal for resin infusion, resin transfer moulding (RTM), filament winding, pultrusion and wet lay up applications. The system is formulated to produce high performance composite parts using a wide variety of fibre systems, including carbon fibre, glass fibre and aramid fibre. The system has been formulated to ensure efficient wetting of fibres, eliminating air entrapment, dry spots and porosity in the composite part. Learn More
  • EP5752 Laminating System Data

    ALCHEMIX EP 5752 is an ambient cure epoxy resins system, available with a variety of hardeners for specific applications. Full product properties can be found on the appropriate technical data sheets. Learn More
  • EP5753 - H105

    ALCHEMIX EP 5753 – H105 is an epoxy system, exhibiting excellent through cure, even at low temperatures. ALCHEMIX EP 5753 – H105 exhibits outstanding mechanical and thermal properties. The system is formulated to produce high performance composite parts using a wide variety of fibre systems, including carbon fibre, glass fibre and aramid fibre. The system has been formulated to ensure efficient wetting of fibres, eliminating air entrapment, dry spots and porosity in the composite part. Learn More

Items 1 to 10 of 12 total

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