Frequently Asked Questions

What are composite coil springs, and how are they different from traditional steel springs?

Composite coil springs are made from carbon fiber materials combined with thermosetting resin, offering superior weight savings, improved noise and vibration damping, and enhanced durability compared to traditional steel springs.

What types of vehicles can benefit from composite coil springs?

Our composite springs are ideal for a variety of vehicles, including off-road vehicles, passenger cars, crossovers (CUVs), trucks, and SUVs, with specific designs tailored to each application.

 

How much weight can be saved by using composite coil springs?

Composite coil springs achieve 40% to 60% weight savings compared to steel, which contributes to improved efficiency and performance, especially in electric vehicles (EVs).

Are Carsolia’s composite coil springs eco-friendly?

Yes, our springs require significantly less energy to produce than steel, reduce CO2-kgE emissions by up to 75%, and are made with fully reclaimable materials to support zero landfill initiatives.

Do composite coil springs perform as well as steel springs?

Yes, our composite coil springs are designed to match the performance of high-strength steel springs, including compression ability, spring rate, and packaging dimensions, while also providing additional benefits like NVH (noise, vibration, harshness) improvements.

Can Carsolia’s springs handle off-road and heavy-duty applications?

Absolutely. Our composite springs are specifically engineered for demanding applications, including light trucks, SUVs, and off-road vehicles, ensuring durability and reliability under extreme conditions.

What makes Carsolia’s composite coil springs unique?

Our innovative design approach includes patented processes, polygonal shapes, and strategic carbon fiber orientation, delivering a perfect combination of functionality and aesthetic appeal.

Are composite coil springs suitable for high-volume production?

Yes, our manufacturing process is optimized for scalability, allowing efficient production of high-quality composite springs without the need for extensive capital equipment or facility space.