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Dive into the research topics where Alexandre Paternoster is active.

Publication


Featured researches published by Alexandre Paternoster.


Journal of Intelligent Material Systems and Structures | 2013

Geometrical optimization of a hingeless deployment system for an active rotor blade

Alexandre Paternoster; Richard Loendersloot; Andries de Boer; Remko Akkerman

Deployment systems for the Gurney flap need to sustain large centrifugal loads and vibrations while maintaining precisely the displacement under aerodynamic loading. Designing such a mechanism relies on both the actuation technology and the link that transmits motion to the control surface. Flexible beams and piezoelectric patch actuators have been chosen as components to design this mechanism. Flexible beams provide a hingeless robust structure onto which the piezoelectric actuators are bonded. A candidate topology is determined by investigating the compliance of a simple wire structure with beam elements. A parameterized finite element model is then built and optimized for displacement and force through surrogate optimization.


ASME 2011 Conference on Smart Materials, Adaptive Structures and Intelligent Systems, Volume 2 | 2011

Geometric Optimisation of Hinge-Less Deployment System for an Active Rotorblade

Alexandre Paternoster; Richard Loendersloot; André de Boer; Remko Akkerman

The Green Rotorcraft project (part of Clean Sky JTI) is studying the Gurney flap as a demonstrator of a smart adaptive rotorblade. Deployment systems for the Gurney flap need to sustain large centrifugal loads and vibrations while maintaining precisely the displacement under aerodynamic loading. Designing such a mechanism relies on both the actuation technology and the link which transmits motion to the control surface. Flexible beams and piezoelectric patch actuators have been chosen as components to design this mechanism. Flexible beams are providing an hinge-less robust structure onto which the piezoelectric actuators are bonded. A candidate topology is determined by investigating the compliance of a simple wire structure with beam elements. A parametrized finite element model is then built and optimized for displacement and force through surrogate optimization. The whole process does not requires many finite element analyses and quickly converge to an optimized mechanism.


Smart actuation and sensing systems - Recent advances and future challenges | 2012

Smart Actuation for Helicopter Rotorblades

Alexandre Paternoster; R. Loendersloot; A. de Boer; Remko Akkerman


The Power of Design: Product Innovation in Sustainable Energy Technologies | 2012

3. Energy Technologies

J. Schoonman; Angèle Reinders; Wilfried van Sark; Frank de Bruijn; Paul Kühn; Arjen Jansen; Arjan de Winter; Bram Entrop; Alexandre Paternoster; Pieter de Jong; André de Boer


Optics Express | 2012

Simulation of Flexible Mechanisms in a Rotating Blade for Smart-Blade Applications

Alexandre Paternoster; R. Loendersloot; A. de Boer; Remko Akkerman


Current Opinion in Cell Biology | 2012

Piezoelectric energy conversions

Alexandre Paternoster; P.H. de Jong; A. de Boer


Optics Express | 2011

Geometric optimisation of a gurney flap henge-less deployment system for a helicopter model blade

Alexandre Paternoster; Richard Loendersloot; Boer de J. A; Remko Akkerman


International Journal of Public Health | 2011

Geometric Optimisation of Hinge-less Deployment System for an Active Rotorblade

Alexandre Paternoster; Richard Loendersloot; Boer de Andre; Remko Akkerman


IEEE Transactions on Wireless Communications | 2010

Actuators for smart applications

Alexandre Paternoster; Boer de Andre; Richard Loendersloot; Remko Akkerman


Talanta | 2009

Actuator review for smart rotor blades

Alexandre Paternoster; A. de Boer; Remko Akkerman

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Angèle Reinders

Delft University of Technology

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Arjen Jansen

Delft University of Technology

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