Do you have an idea for a specific product but are unsure how to implement it?
Or are you exploring whether composite components are the right solution for your application? The range of applications for composite materials is often broader than expected. BIONTEC offers personal and non-binding support for feasibility studies and product development, from initial concept to series-ready composite components.

Industries Beyond Our
Core Areas
In road and rail transportation, lightweight construction plays a key role in efficiency and performance. Every kilogram saved brings clear advantages: increased range for electric vehicles, improved driving dynamics, reduced energy consumption, and higher payload capacity. Composites create measurable added value for manufacturers and operators alike.
Carbon fiber composites are well-established in sports due to their high strength and low weight. From professional equipment to leisure products, composite components improve handling, enable targeted damping, and enhance the overall user experience. Optimized fiber architectures allow performance to be precisely tailored to the demands of any sport or application.
Defense-related applications demand robust structures, reliable performance, and controlled manufacturing processes. Carbon fiber composites withstand harsh environments and long lifespans. BIONTEC develops composite components where durability, reproducibility, and structural performance are critical.
In technical hardware and equipment, composites enable compact, stable, and highly integrated solutions. Carbon fiber composite components combine mechanical strength with design flexibility, making them suitable for functional housings, frames, and structural elements where both performance and aesthetics are important.
Marine applications benefit greatly from lightweight construction and corrosion resistance. Carbon fiber composites reduce structural weight while maintaining stiffness and strength, which improves the handling, efficiency, and payload capacity of boats, yachts, and marine systems. The result is durable performance in demanding maritime environments.
Beyond functional requirements, our carbon fiber composites offer exceptional design freedom. Organic geometries, high-quality surfaces, and a distinctive material appearance make composite components attractive for lifestyle, fashion, and premium consumer goods. We are happy to support projects where technical performance and visual impact are equally important.

Engineered for Performance. Proven in Practice.

Bicycle Crank
Full carbon bicycle crank with foam core, engineered for maximum stiffness and efficient power transfer. The fiber architecture is aligned with primary load paths, resulting in high performance with minimal weight and excellent durability under cyclic loading.

Full Carbon Brake Lever
Lightweight brake lever with optimized fiber orientation ensures precise power transmission and reliable performance, while the integrated design reduces the number of components and the overall system weight.

Carbon Clamp for Brake Levers
Ultralight carbon clamp for brake levers. Weighing only 1.7 grams, it offers exceptional strength and stiffness, ensuring secure attachment and reliable performance under demanding conditions.

CFRP Rotor Blade for Racing Yachts
Carbon composite rotor blade for wind generators on racing yachts. The structure combines low mass with high stiffness, enabling high rotational speeds and reliable performance in demanding marine environments.

Fork Crown and Steerer Tube for Suspension Fork
Full carbon fork crown and steerer, developed for a high-performance MTB suspension fork. The optimized composite design combines high stiffness with low weight and features a fail-safe structure with very progressive failure behavior.

Intermediate Shaft for Automotive Applications
Lightweight carbon intermediate shaft with integral design, optimized stiffness, low weight, and ideal hole reinforcement.

Carbon Fiber Window Corner for Rail Applications
Lightweight carbon fiber composite component, developed for train window systems. The component combines structural performance with reduced weight and enables efficient integration into modern rail vehicle structures.

Wing Support for a Sports Car
Carbon fiber wing support developed as a high-performance alternative to an aluminum component for a sports car. The component uses a load path-optimized fiber architecture to combine structural performance with reduced weight.
Kohlefaserverbund-Einblicke
Wie die Faserausrichtung die Leistung beeinflusst
Von prädiktiven Heatmaps bis zu Echtzeit-Dashboards: Warum moderne Unternehmen eine bessere Risikotransparenz benötigen.
Wie die Faserausrichtung die Leistung beeinflusst
Von prädiktiven Heatmaps bis zu Echtzeit-Dashboards: Warum moderne Unternehmen eine bessere Risikotransparenz benötigen.
Harzsysteme und ihre gezielte Auswahl


Composite materials are particularly suitable when weight, stiffness, functional integration, or design play a decisive role. If your product reaches limits with metal or plastics, composites often offer new solution space. BIONTEC evaluates your application and provides an initial technical assessment to determine suitability.
Yes. Many projects don't fit into our classic industries. BIONTEC regularly develops composite components for new or niche applications where standard solutions are not available. Each project is individually assessed based on requirements, environment, and production volume.
The earlier, the better. Early involvement allows for the alignment of composite design, material selection, and manufacturing concepts from the outset. This reduces development risk and improves technical and economic feasibility.
BIONTEC primarily collaborates with companies that have a clear product vision and resources to support development and industrialization. Start-ups are typically involved through funded or cooperative development projects where the scope, timeline, and investment framework are clearly defined.

