Audi unveils the R26 Concept and prepares for its arrival in Formula One_Overseas information_news_China composite information network

Audi unveils the R26 Concept and prepares for its arrival in Formula One

   Date:2025-11-19     Source:JEC     Hits:116     Comment:0    
Core tips:With only a few months to go before its Formula One debut, Audi has presented the R26 Concept in Munich, the first expression of the visual identity that will accompany the brand when it officially joins the championship in 2026.
 For Audi, entering F1 forms part of a wider strategic project. The manufacturer has revealed its new vehicle concept, the R26 Concept, which introduces a strong identity to support an ambitious programme built around a new-generation hybrid power unit and full integration between chassis and engine. This decision comes at a time when new engine and hybrid regulations are due to take effect from 2026, bringing increased electrification, sustainable fuels and broader technological change.

With a global audience that continues to grow and a more stable economic framework, Audi sees Formula One as a key technological and marketing platform.

Composite materials, a technical foundation


Formula One has long been a cutting-edge laboratory for the development and optimisation of composite materials. The future Audi single-seater will naturally be able to draw on the full range of solutions already standardised within the discipline, while simultaneously preparing new applications compatible with the demands of the 2026 regulations.

Although Audi has not yet publicly disclosed the materials used on its car, the central structure – the monocoque – could be manufactured from polymer-matrix carbon composites, offering an unrivalled strength-to-weight ratio and the energy-absorption capability required to pass FIA crash tests. Aerodynamic components, from the engine cover to the wings, could in turn rely on carbon prepregs optimised for mechanical stability and precise deformation control.

Areas subjected to intense thermal loads, particularly around the hybrid system and turbocharger, require high-temperature resins and advanced composites capable of withstanding extreme thermal gradients. To this must be added carbon/carbon braking systems, essential for operating reliably at temperatures exceeding 1,000°C.

 
 
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