
NAA Member News: Aerospace industry-grade carbon fibre comes to supercars with McLaren ART carbon
With more than four decades of experience in exploiting the benefits of carbon fibre as an enabler of light weight, high performance, and structural strength, McLaren has driven key developments in racing and automotive uses for the material, making it not only the standard across the Formula 1 grid, but bringing it to the road, too.
Every single McLaren ever made has been based on a carbon fibre monocoque, while McLaren also maximises the benefits of this lightweight, strong and durable material in body structures and aerodynamic systems, to unlock maximum performance and thrilling driving dynamics without compromise.
And McLaren Automotive has now developed a world-first application of a cutting-edge and highly specialised manufacturing process in the automotive sector, that will enhance its future models via a major leap forward in carbon fibre technology that augments the best attributes of the material, and more.
The aerospace industry uses ultra-precise manufacturing methods to build highly tailored carbon fibre structures for the latest generation of air jetliners and fighter aircraft, particularly for large, crucial parts such as aircraft fuselage and wings. This is achieved via the robotic depositing of composite tapes to layer structures, over traditional hand layup using pre-impregnated materials. And it is a rapid pace, ‘high rate’ version of this production method that McLaren has developed and now integrated into its manufacturing capabilities at the McLaren Composites Technology Centre (MCTC) in Sheffield, UK.
Called Automated Rapid Tape (ART), it unlocks the enormous potential to further enhance McLaren road cars with carbon fibre structures that are optimised to be even lighter, stiffer and stronger, produced with even greater consistency from part to part, and produced in a manner that generates less waste material. The resulting McLaren ART carbon fibre forms are also visually distinct from conventional hand-cut pre-impregnated carbon fibre components.
Completely revolutionising the aerospace industry method of using robotic arms to layer composite tapes, McLaren’s Automated Rapid Tape method instead employs a specially designed machine using a fixed deposition head and a rapidly moving bed capable of rotation, which unlocks a faster manufacturing process suitable for automotive purposes and high-rate composites manufacturing.
Greater design freedom for engineers
McLaren ART enables tailored fibre placement, creating new possibilities relating to load bearing or stiffness requirements not possible by conventional methods. It encourages innovation by freeing engineers from uniform material constraints. Specific adjustment of fibre orientation within the composite material allows for anisotropic stiffness – rigidity can be enhanced in specific directions while flexibility can be maintained elsewhere. This unlocks new ways to design highly loaded, complex aerodynamic components.