Buckling analysis of smart beams based on higher order shear deformation theory and numerical method

PhD.Tran Trong NhanPouyan Talebizadehsardari, Arameh Eyvazian, Mojitaba Gorji Azandariani, Dipen Kumar Raja, Roohollah Babaei Mahani

Faculty of Automotive Engineering

Research output: Article

researchs.abstract

The buckling analysis of the embedded sinusoidal piezoelectric beam is evaluated using numerical method. The smart beam is subjected to external voltage in the thickness direction. Elastic medium is simulated with two parameters of spring and shear. The structure is modelled by sinusoidal shear deformation theory (SSDT) and utilizing energy method, the final governing equations are derived on the basis of piezo-elasticity theory. In order to obtaining the buckling load, the differential quadrature method (DQM) is used. The obtained results are validated with other published works. The effects of beam length and thickness, elastic medium, boundary condition and external voltage are shown on the buckling load of the structure. Numerical results show that with enhancing the beam length, the buckling load is decreased. In addition, applying negative voltage, improves the buckling load of the smart beam.

Overview
Type
Article
Publication year
10 Jun 2020
Original language
English
Published Journal
Steel and Composite Structures
Volume No
Vol. 35 No. 5
Classification
ISI Indexed
ISSN index
1229-9367(pISSN) / 1598-6233(eISSN)
Page
635-640
Quartiles
Q1

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