The role of nonlocality on low and high frequency behaviors of functionally graded sandwich nanoplates

Author:

Ghazwani Mofareh Hassan1,Alnujaie Ali1,Eltaher Mohamed A.23,Van Vinh Pham45ORCID

Affiliation:

1. Mechanical Engineering Department Faculty of Engineering Jazan University Jazan Kingdom of Saudi Arabia

2. Mechanical Design and Production Department Faculty of Engineering Zagazig University Zagazig Egypt

3. Mechanical Engineering Department Faculty of Engineering King Abdulaziz University Jeddah Saudi Arabia

4. Institute of Physics and Mechanics Peter the Great St. Petersburg Polytechnic University Saint Petersburg Russia

5. Department of Solid Mechanics Le Quy Don Technical University Hanoi Vietnam

Abstract

AbstractThe role of nonlocality on low and high frequency behaviors and modes of the functionally graded (FG) sandwich nanoplates is investigated in this study for the first time using simple nonlocal higher‐order shear deformation theory (HSDT). The simple HSDT consists of only four unknowns in its equation of the displacement field. The nonlocal elasticity theory is used to consider the small‐scale effects on the behaviors of the nanoplates. The governing equations of motion are established by applying Hamilton's principle, then Navier's solution technique is employed to solve these equations to achieve the free vibration behaviors of the FG sandwich nanoplates. The vibrations of the nanoplates under both low and high frequency conditions are investigated, but the high frequency vibration of the nanoplates is discussed extensively. The influences of the geometrical dimensions, material gradient index, and nonlocal parameter on the high frequency vibration of the FG nanoplates are also considered and discussed comprehensively.

Publisher

Wiley

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