
Composite Solutions for Recreational Vehicles

Lightweight Composite Solutions for Recreational Vehicles
Motorhomes, campervans, and caravans benefit from lightweight yet durable composite materials that reduce fuel consumption while improving comfort and longevity. Sky Composites’ core materials and advanced reinforcement solutions replace traditional materials, enabling stronger, corrosion-free, and more sustainable recreational vehicles.
By using high-performance composite cores for floors, wall panels, furniture, and even complete structures, recreational vehicles become lighter, stronger, and more energy-efficient. Unlike wood, composites do not rot or swell, and unlike metal, they do not corrode. With excellent insulation properties, they also eliminate cold bridges, ensuring better comfort in all weather conditions. The result is a vehicle with reduced maintenance needs, improved fuel efficiency, and an extended service life.
Why choose Sky Composites for recreational vehicles?
Reduced weight & fuel savings
Lightweight materials improve vehicle efficiency, reduce emissions, and enhance drivability.
Long-lasting durability
Non-organic composites resist rot, swelling, and corrosion, ensuring years of reliable use.
Superior insulation & comfort
Closed-cell cores eliminate cold bridges, improving thermal efficiency and passenger comfort.
Lower maintenance costs
Durable materials reduce upkeep requirements and extend product lifespan.

Certified quality with DNV Certification
Sky Composites’ composite solutions, including PVC core materials, PET foam, and carbon fiber fabrics, are DNV certified, ensuring compliance with the highest global standards for safety, reliability, and performance. This certification guarantees that our materials are suitable for demanding marine applications, providing peace of mind and unmatched quality for your projects.

Ready to build stronger solutions together?
Partner with Sky Composites to bring innovative, high-performance materials to your industry. Let’s shape the future, one composite at a time.