Modeling and Design of a Full-Scale Rotor Blade with Embedded Piezocomposite Actuators
Механика композитных материалов = Mechanics of Composite Materials 2017
Andrejs Kovaļovs, Jevgenijs Barkanovs, Sandris Ručevskis, Miroslaw Wesolowski

An optimization methodology for the design of a full-scale rotor blade with an active twist in order to enhance its ability to reduce vibrations and noise is presented. It is based on a 3D finite-element model, the planning of experiments, and the response surface technique to obtain high piezoelectric actuation forces and displacements with a minimum actuator weight and energy applied. To investigate an active twist of the helicopter rotor blade, a structural static analysis using a 3D finite-element model was carried out. Optimum results were obtained at two possible applications of macrofiber composite actuators. The torsion angle found from the finite-element simulation of helicopter rotor blades was successfully validated by its experimental values, which confirmed the modeling accuracy.


Keywords
закручивание активное, композит макроволокнистый, лопасть винта несущего вертолета, оптимизация, поверхность отклика

Kovaļovs, A., Barkanovs, J., Ručevskis, S., Wesolowski, M. Modeling and Design of a Full-Scale Rotor Blade with Embedded Piezocomposite Actuators. Механика композитных материалов = Mechanics of Composite Materials, 2017, ?.53, N 2, pp.259-278. ISSN 0203-1272.

Publication language
Russian (ru)
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