Modeling mechanical behavior of distributed piezoelectric actuators for morphing wing applications

Author:

Wang ShuaiORCID,Zhao FeiORCID,Zhou BoORCID,Xue ShifengORCID

Abstract

PurposeA distributed piezoelectric actuator (DPA) improving the deformation performance of wing is proposed. As the power source of morphing wing, the factors affecting the driving performance of DPA were studied.Design/methodology/approachThe DPA is composed of a substrate beam and a certain number of piezoelectric patches pasted on its upper and lower ends. Utilizing the inverse piezoelectric effect of piezoelectric material, the DPA transfers displacement to the wing skin to change its shape. According to the finite element method and piezoelectric constitutive equation, the structure model of DPA was established, and its deformation behavior was analyzed. The accuracy of algorithm was verified by comparison with previous studies.FindingsThe results show that the arrangement way, length and thickness of piezoelectric patches, the substrate beam thickness and the applied voltage are the important factors to determine the driving performance of DPA.Research limitations/implicationsThis paper can provide theoretical basis and calculation method for the design and application of distributed piezoelectric actuator and morphing wing.Originality/valueA novel morphing wing drove by DPA is proposed to improve environmental adaptability of aircraft. As the power source achieving wing deformation, the DPA model is established by FEM. Then the factors affecting the driving performance are analyzed. The authors find the centrosymmetric arrangement way of piezoelectric patches is superior to the axisymmetric arrangement, and distribution center of the piezoelectric patches determines the driving performance.

Publisher

Emerald

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science,Modelling and Simulation

Reference20 articles.

1. Piezoelectric energy harvesting from morphing wing motions for micro air vehicles;Theoretical and Applied Mechanics Letters,2013

2. Precise deflection analysis of beams with piezoelectric patches;Composite Structures,2003

3. Piezo-ceramic composite actuators for a solid-state variable-camber wing;Journal of Intelligent Material Systems and Structures,2013

4. Feedforward piezoelectric structural control: an application to aircraft cabin noise reduction;Journal of Aircraft,2001

5. Stress analysis of sandwich composite beam induced by piezoelectric layer;Journal of Applied Biomaterials and Functional Materials,2018

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