
In the world of Formula Student, where every millisecond counts and every component is pushed to its absolute structural limit, there is no room for error: and certainly no room for unnecessary friction. To ensure our car performs optimally, we rely on the global leader in motion technology.
We are incredibly proud to continue our partnership with SKF, a sponsor that has been an integral part of the Revolve NTNU journey since the early days of the team.

A race car contains many rotating parts. From the wheel hubs and suspension pivots to the high-revving internals of our drivetrain, the quality of our bearings play a crucial role in determining our full vehicle efficiency and reliability.
Because every Revolve car is a unique prototype, we face extreme lateral forces and thermal loads that would compromise standard components. SKF provides the high-precision bearings and specialized solutions that keep our car moving smoothly under the most intense racing conditions.

Our collaboration with SKF goes far beyond the delivery of physical parts. We greatly appreciate how the SKF team is a constant resource for our engineers. Whether we have complex questions regarding assembly tolerances or the optimal implementation of specialized bearing solutions, their experts are always available to help us find the answer. SKF´s insights into lubrication, mounting techniques, and material properties ensure that we get maximum performance out of every component.

Having been with us since the beginning, SKF has seen Revolve NTNU evolve from a small student project into a world-class engineering team. They don't just provide parts; they provide the stability and precision that allow us to push for the podium year after year.
A huge thank you to the entire team at SKF for your constant support and expertise, your contribution is important for our success, and quite literally enables our wheels to turn. As we head into a new season of testing and competition, we look forward to continuing this partnership of smooth rotation and high performance.