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Stravigym XP

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  • Stravigym XP

    Stravigym XP

    Load distribution layer of a standard Stravigym XP solution, consisting of 3 wooden boards with 2 damping layers, for superior acoustical performance and mechanical resistance. 

  • Stravigym XP Compact

    Stravigym XP Compact

    Load distribution layer of a more compact version with comparable mechanical resistance, Stravigym XP Compact, consisting of 2 stronger wooden boards with 1 damping layer.

Benefits

  • Specifiers

    For Specifiers

    Guaranteed Acoustical Performance
    • Engineered for extreme acoustic performance requirements (e.g., free weight areas)
    • Performance adaptable to different criteria through selectable bearing types (elastomeric or springs), with varying load capacities and natural frequencies
    • Natural rubber bearings provide a low, stable natural frequency over a wide load range, combining high dynamic stiffness with minimal deflection and low creep for long‑term performance
    • Constrained Layer Damping (CLD) integrated in the load distribution layer, optimising stiffness, ductility, damping and limiting vibration radiation
    • Performance validated by laboratory testing (drop‑weight impact and standardised acoustic tests: Rw + Ln,w), complemented by on‑site measurements
    Safety & Structural Integrity
    • Lightweight system suitable for projects with structural load limitations
    • Designed for extreme-impact zones [impact energy up to 1000 N·m, offering superior structural performance
    • Reduces the risk of post‑installation performance deviations, non‑compliance and remedial works
    Flexible Design
    • Supports complex gym layouts through modular, adaptable system components
    • Enables performance optimisation by zone, avoiding unnecessary overdesign while maintaining compliance
    • Allows integration of additional impact‑absorption layers to increase contact time, reduce peak forces and improve energy dissipation where required
    • System can be designed to achieve high acoustic performance and mechanical resistance while maintaining a limited build‑up height for floor‑to‑ceiling height optimisation (Stravigym XP Compact)
    Easy to Specify
    • Ready‑to‑use specification support, including .dwg construction details 
    Sustainability
    • Environmental performance data available on request, including Global Warming Potential (GWP)
  • Operators

    For Operators

    Optimised Performance 
    • Suitable for high‑impact zones such as free‑weight areas, allowing users to drop heavy weights directly on the floor without disturbing neighbouring spaces, 24/7
    Installation & Operational Continuity
    • Dry, modular installation minimises downtime and associated revenue loss during retrofit or refurbishment works
    • Fast-track installation enables resolution of acoustic issues typically within one week, without requiring full gym closure
    • Allows continued operation of adjacent areas, reducing disruption to members and staff
    Flexibility & Adaptability
    • System can be designed to achieve high acoustic performance and mechanical resistance while maintaining a limited build‑up height for floor‑to‑ceiling height optimisation (Stravigym XP Compact)
    • Modular design makes it easy to adapt, reconfigure or upgrade as layouts, equipment mix, usage or surrounding areas demands evolve over time
    Risk Reduction & Durability
    • Minimises the risk of structural damage and costly retrofits caused by repeated heavy impacts
    • Reduces the risk of post-installation issues, callbacks and complaints from neighbouring or underlying spaces
    • Durable solution engineered for heavy‑duty use and long‑term operational performance
    Proven Performance & Scalability
    • Supports consistent performance across multiple locations through a standardised, repeatable solution
    • Proven in real-world applications worldwide, across commercial gyms, residential facilities, chains and amenity spaces
    Sustainability
    • Modular system design, fully demountable and suitable for reuse or simplified end‑of‑life management

Case Studies