Carbo-Link, founded in Switzerland in 2000 as a spin-off from EMPA, is now a leader in innovation of CFRP structural components across industries like aerospace, infrastructure, and marine, focusing on sustainability and performance. With over 20 years of innovation, the company has pioneered numerous CFRP solutions, including the world’s first railway bridge fully supported by CFRP cables, and holds AS9100D Aerospace & Defence Certification.

  • Bridge Cables

    Carbo-Link’s CFRP bridge cables deliver superior strength, durability, and corrosion resistance for modern bridge construction. Engineered for optimal performance, they offer lightweight efficiency, extended service life, and reduced maintenance. Whether for cable-supported structures or innovative rehabilitation projects, our precision-engineered solutions enhance bridge reliability and sustainability.

  • Structural Reinforcement

    Carbo-Link’s CFRP structural reinforcements are offering high performance with lightweight properties, our CFRP straps are ideal for reinforcing concrete, steel, and timber elements. With excellent resistance to corrosion and fatigue, our solutions extend the lifespan of bridges, buildings, and other infrastructure while minimizing the need for maintenance and repairs.

  • Crane Cables

    Carbo-Link’s CFRP Crane Cables are engineered for high-performance lifting and towing applications, offering exceptional strength and lightweight properties. Designed to withstand heavy loads and harsh environments, these cables provide superior fatigue resistance and corrosion resistance, ensuring reliable operation over time. With minimal maintenance requirements, Carbo-Link’s CFRP crane cables deliver a cost-effective and long-lasting solution for industries requiring robust and efficient lifting systems.

  • Linkages & Toggles

    Carbo-Link’s CFRP Linkkages & Togglees are precision-engineered for maximum strength and flexibility in dynamic applications. Their lightweight design enhances performance while reducing the overall weight of systems. Built for high-stress environments, these components offer outstanding load-bearing capacity and exceptional durability.

  • Yacht Rigging

    Carbo-Link’s CFRP yacht rigging is designed to reduce weight while maintaining exceptional strength and flexibility, optimizing sail handling and responsiveness. The advanced composite materials improve the rigging’s ability to handle high dynamic loads and delivering superior performance in varying wind conditions. By reducing the overall weight of the rig, our solutions contribute to better balance and agility, empowering sailors to achieve higher performance with every tack and jibe.

  • Yacht Masts and Spars

    Carbo-Link’s CFRP masts and spars combine lightweight design with exceptional strength, offering superior stability and performance for yachts of all sizes. Engineered to withstand the forces of nature, our masts and spars provide the rigidity needed for efficient sail support while minimizing weight for improved speed and agility. With tailored solutions that optimize the yacht’s handling, Carbo-Link’s CFRP components help sailors unlock their vessel's full potential, ensuring reliable performance on every voyage.

  • Furling Foils

    Carbo-Link’s CFRP furling foils are engineered for precision and reliability in sail handling. The lightweight, high-strength design offers increased efficiency and smoother furling, even in challenging conditions. Built to reduce drag while providing optimal stiffness, these foils ensure excellent control and responsiveness, enhancing the overall performance of your yacht.

  • Aerospace Structures & Parts

    Carbo-Link’s CFRP aerospace structures and parts provide advanced solutions for the aerospace sector, offering a combination of strength, lightweight performance, and rigidity. AS9100D Aerospace & Defence Certified, our components meet the highest industry standards, improving fuel efficiency, performance, and durability. Designed for a broad range of applications, Carbo-Link’s CFRP solutions help reduce weight, enhance efficiency, and ensure the reliability and performance of aerospace systems.