4.7 Article

A lattice sandwich structure with the active variable stiffness device under aerodynamical condition

Journal

AEROSPACE SCIENCE AND TECHNOLOGY
Volume 116, Issue -, Pages -

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ast.2021.106849

Keywords

New lattice sandwich structure; Active variable stiffness; Aerodynamical condition; Active vibration control

Funding

  1. National Natural Science Foundation of China [12022213, 11902203]
  2. Program of Liaoning Revitalization Talents [XLYC1807172]

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A novel pyramid lattice sandwich structure with active variable stiffness (AVS) is proposed, which has excellent self-adjusting and active vibration reduction effect. Through analysis and comparison of the impact of different parameters, it is proven that the structure can achieve ideal vibration reduction effect.
Herein, a novel pyramid lattice sandwich structure with the active variable stiffness (AVS) is proposed, which consists of a proportion integration (PI) active controller, a piezoelectric actuator, and a variable stiffness device. The principle of AVS is to process the real-time vibration feedback signal of the lattice sandwich beam by using the PI controller and the piezoelectric actuator to change structural stiffness continuously. The structure has excellent self-adjusting and active vibration reduction effect. Based on the supersonic piston theory, Hamilton's principle, and the assumed modes method, the dynamics equations of the whole structure are established. The vibration reduction and energy dissipation of lattice sandwich beams with AVS and without AVS are analyzed by using the Runge-Kutta algorithm. Moreover, the relevant parameters of PI controller, positive stiffness, negative stiffness, incoming flow velocity, damping coefficient, and installation position are compared and analyzed, respectively. The results indicate that the novel lattice sandwich structure with AVS can achieve ideal vibration reduction effect, and the efficiency can be improved by adjusting the parameters appropriately. (C) 2021 Elsevier Masson SAS. All rights reserved.

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