Africa Mining and Engineering Review

SKF presents a novel bearing steel unlocking the potential to enable the next generation of aero-engines

SKF presents a novel bearing steel unlocking the potential to enable the next generation of aero-engines

To support these new designs, SKFs new steel will enable bearing solutions, which will enable new architectures of engines for aviation.

SKF continues to re-imagine intelligent and clean rotation with the development of an innovative temperature-resistant, corrosion-tolerant steel for aero-engine bearings called ARCTIC15.

With the Aerospace industry striving to reach net zero emissions by 2050, next generation jet engine designs are evolving towards groundbreaking architectures which require rolling bearings capable of higher power density and speeds beyond the current design rules.

SKF’s customers are designing new engines that aim to cut fuel use by 20 to 25%, which also reduces emissions. To support these new designs, SKFs new steel will enable bearing solutions, which will enable new architectures of engines for aviation.

“As aviation moves toward designing engines that aim to cut fuel consumption by up to 25%, reducing emissions significantly, SKF is innovating to match that ambition. Our new steel alloy ARCTIC15 is engineered as a breakthrough material to allow for smaller, more compact bearing solutions that handle higher loads, unlocking new engine architectures and driving efficiency across the entire lifecycle, with repairability as a key driver. This novel steel enables faster development cycles and supports industry sustainability goals for the future”,says Gregory A Zimmerman, Director of Aerospace Business Unit at SKF. 

Gregory A Zimmerman – Aerospace Business Unit Director SKF

For such performance increase, the first step is made by replacing steel rolling elements with ceramic rolling elements. The second step comes by pairing ceramic rolling elements with an advanced aero-engine bearing steel with higher load and temperature capacity than existing steels. These distinctive properties open the door to new engine architectures with enhanced efficiency.

“With cross-functional collaboration and sustainability-driven programs aligned with global megatrends and industry needs, we are actively driving the climate transition. As both a supplier and customer, we transform deep insights into smart, practical solutions that reduce friction, cut emissions, and extend equipment life—helping industries move toward more sustainable operations”, says Hans Landin, President, Specialized Industrial Solutions.

Hans Landin – President Specialized Industrial Solutions SKF

The new patented steel technology will be commercially available and shared by SKF at the Patent Bay. A new platform open to companies that aim to accelerate technologies with the potential to advance sustainability, by making selected patents freely available to others. 

This sparked the development of ARCTIC15

  • The team has been developing and successfully testing an innovative case-carburized stainless steel for aero-engine bearings by for nearly a decade, ever since SKF’s customers began designing next-generation engines focused on reducing fuel consumption — driven by the EU-funded Clean Sky initiative

HEAVEN | Clean Aviation

  • Significant material and tribological testing from elemental to the current full-scale tests have been performed, demonstrating the performance of the developed bearing material technologies.
  • Demonstrator and full-scale bearing prototypes have been manufactured by SKF Aerospace factories combining this advanced steel with ceramic balls, validating both endurance and resistance to severe operating conditions like when oil supplied is discontinued.
  • An actual ground test demonstration will be performed early 2026 as part of the Technology Readiness Levels process with one of the industry’s leading aeroengine original equipment manufacturers (OEM).

Disclaimer

Up to 25% emission reduction

The improved fuel efficiency is enabled by a range of innovations and collaborations—one of which is Arctic15’s contribution to a more optimized engine architecture. 

Read more: UltraFan – The Ultimate Turbofan Collaboration and Innovation for the Future of Flight

The stated emission reduction refers exclusively to the engine’s fuel efficiency improvements. It does not reflect a full lifecycle assessment of a future aircraft. 

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