Smart helicopter thanks to active rotor bladesUniversity of Twente PhD researcher simplifies integration of smart systems into rotor blades5 March 2013 |
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Active systems in helicopter rotor blades can adapt the blades’ aerodynamic properties to local airflow conditions. The use of such systems leads to lower fuel consumption, increased maximum speed and reduced noise and vibration. A French PhD researcher at the University of Twente, Alexandre Paternoster, has developed a method for implementing these innovative systems, thereby bringing the smart helicopter one step closer. Dr Paternoster’s research is part of the European “Clean Sky” Joint Undertaking, which aims to increase the efficiency of air transport. The researchers involved in this Joint Undertaking are currently focusing mainly on active flap systems in helicopter rotor blades. The integration of these systems is no easy matter, given the enormous forces generated by rotor blade rotation, and the durability and reliability requirements involved. Using software simulations and a wind tunnel, Alexandre Paternoster examined the selection process for these actuators and determined the optimal design for such systems. His aim was to make them easier to integrate. Dr Paternoster concluded that mechanisms based on piezoelectric materials are capable of meeting these requirements. He feels that the devices best suited for use in rotor blades are the d33 patch actuators from Physik Instrumente. He concluded his study by creating a prototype of this z-shaped mechanism. This prototype made it possible to obtain experimental validation of the movements within the mechanism. The prototype performs superbly, and can be easily integrated into helicopter rotor blades. It also demonstrates the potential of piezoelectric material in actuation mechanisms. The development of such innovative technologies provides actuation system solutions for the highly demanding aerospace industry. The next generation of smart helicopters will soon be taking to the skies. PhD defence Dr Paternoster conducted his PhD research at the University of Twente’s Faculty of Engineering Technology (CTW). He was supervised by Prof. A. De Boer and Prof. R. Akkerman. He was awarded a PhD in this topic on 28 February 2013. Note to the press
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