PAL-V, the world leader in FlyDrive mobility solutions proudly announces a significant milestone in their collaboration with Royal NLR - Netherlands Aerospace Centre.**PAL-V and the Netherlands Aerospace Centre complete rotor development**
Dear Benjamin ,
PAL-V, the world leader in FlyDrive mobility solutions proudly announces a significant milestone in their collaboration with Royal NLR - Netherlands Aerospace Centre. The two parties have successfully completed the development of the rotor blades for the PAL-V Liberty, marking the beginning of the industrialization phase. This achievement brings PAL-V another step closer to the serial production of its revolutionary FlyDrive vehicle (flying car).
The design of PAL-V’s rotor blades was undertaken by NLR, Netherlands’ leading aerospace research institute. NLR's extensive experience in aerospace engineering and composite structures has been crucial in refining the design and ensuring it meets the highest standards of performance and safety. The rotor blades are 20% more efficient with less drag compared to equivalent blades, resulting in better performance and fuel economy. Due to the advanced composite technology, a set of two rotor blades only weighs 35.8 kg while spanning over almost 11 meters in length.
Read full article https://www.pal-v.com/en/press/pal-v-and-the-netherlands-aerospace-centre-complete-rotor-development-entering-industrialization-phase
**PAL-V and the Netherlands Aerospace Centre complete rotor development**
Dear Benjamin ,
PAL-V, the world leader in FlyDrive mobility solutions proudly announces a significant milestone in their collaboration with Royal NLR - Netherlands Aerospace Centre. The two parties have successfully completed the development of the rotor blades for the PAL-V Liberty, marking the beginning of the industrialization phase. This achievement brings PAL-V another step closer to the serial production of its revolutionary FlyDrive vehicle (flying car).
The design of PAL-V’s rotor blades was undertaken by NLR, Netherlands’ leading aerospace research institute. NLR's extensive experience in aerospace engineering and composite structures has been crucial in refining the design and ensuring it meets the highest standards of performance and safety. The rotor blades are 20% more efficient with less drag compared to equivalent blades, resulting in better performance and fuel economy. Due to the advanced composite technology, a set of two rotor blades only weighs 35.8 kg while spanning over almost 11 meters in length.
Read full article https://www.pal-v.com/en/press/pal-v-and-the-netherlands-aerospace-centre-complete-rotor-development-entering-industrialization-phase
The drive to fly.
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