Analyzing exact nonlinear forced vibrations of two-phase magneto-electro-elastic nanobeams under an elliptic-type force
Author | Mirjavadi, Seyed Sajad |
Author | Nikookar, Mohammad |
Author | Mollaee, Saeed |
Author | Forsat, Masoud |
Author | Barati, Mohammad Reza |
Author | Hamouda, A.M.S. |
Available date | 2023-02-12T06:20:50Z |
Publication Date | 2020 |
Publication Name | Advances in Nano Research |
Resource | Scopus |
Abstract | The present paper deals with analyzing nonlinear forced vibrational behaviors of nonlocal multi-phase piezo-magnetic beam rested on elastic substrate and subjected to an excitation of elliptic type. The applied elliptic force may be presented as a Fourier series expansion of Jacobi elliptic functions. The considered multi-phase smart material is based on a composition of piezoelectric and magnetic constituents with desirable percentages. Additionally, the equilibrium equations of nanobeam with piezo-magnetic properties are derived utilizing Hamilton's principle and von-Kármán geometric nonlinearity. Then, an exact solution based on Jacobi elliptic functions has been provided to obtain nonlinear vibrational frequencies. It is found that nonlinear vibrational behaviors of the nanobeam are dependent on the magnitudes of induced electrical voltages, magnetic field intensity, elliptic modulus, force magnitude and elastic substrate parameters. |
Sponsor | The first and second authors would like to thank FPQ (Fidar project Qaem) for providing the fruitful and useful help. |
Language | en |
Publisher | Techno-Press |
Subject | Forced vibration Nonlinear vibrations Nonlocal elasticity Piezo-magnetic material Piezoelectric reinforcement |
Type | Article |
Pagination | 47-58 |
Issue Number | 1 |
Volume Number | 9 |
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Mechanical & Industrial Engineering [1396 items ]