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Numerical and Experimental Analysis of the Dynamic Behavior of Piezoelectric Stiffened Composite Plates Subjected to Airflow

Chung, N.T. and Thuy, N.N. and Thu, D.T.N. and Chau, L.H. (2019) Numerical and Experimental Analysis of the Dynamic Behavior of Piezoelectric Stiffened Composite Plates Subjected to Airflow. Mathematical Problems in Engineering, 2019: 2697242. ISSN 1024123X

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Abstract

In this paper, the authors present results on dynamic behavior analysis of the stiffened composite plate with piezoelectric patches under airflow by finite element method and experimental study. The first-order shear deformation plate theory and nine-noded isoparametric piezoelectric laminated plate finite element with five elastic degrees of freedom at each node and one electric degree of freedom per element per piezoelectric layer were used in the dynamic analysis of plates by finite element method. The modern equipment was used in the dynamic behaviors analysis of plates subjected to airflow load by experimental method. In this study, the results of the theoretical method have been compared with experimental studies. © 2019 Nguyen Thai Chung et al.

Item Type: Article
Divisions: Faculties > Faculty of Mechanical Engineering
Identification Number: 10.1155/2019/2697242
Uncontrolled Keywords: Composite structures; Degrees of freedom (mechanics); Piezoelectricity; Plates (structural components); Experimental methods; First order shear deformation plate theory; Numerical and experimental analysis; Piezoelectric laminated plates; Piezoelectric layers; Piezoelectric patch; Stiffened composite plates; Theoretical methods; Finite element method
Additional Information: Language of original document: English. All Open Access, Gold, Green.
URI: http://eprints.lqdtu.edu.vn/id/eprint/9457

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