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Research Article | Open Access

Lateral vibration of an axially moving thermoelastic nanobeam subjected to an external transverse excitation

Osama Moaaz1Ahmed E. Abouelregal2,3( )Fahad Alsharari2
Department of Mathematics, College of Science, Qassim University, P.O. Box 6644, Buraydah 51482, Saudi Arabia
Department of Mathematics, College of Science and Arts, Jouf University, Al-Qurayyat 77455, Saudi Arabia
Department of Mathematics, Faculty of Science, Mansoura University, Mansoura 35516, Egypt
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Abstract

This paper gives a mathematical formulation for the transverse resonance of thermoelastic nanobeams that are simply supported and compressed with an initial axial force. The nonlocal elasticity concept is used to analyze the influence of length scale with the dual-phase-lag (DPL) heat transfer theory. The nanobeam is due to a changing thermal load and moves in one direction at a constant speed. The governing motion equation for the nonlocal Euler-Bernoulli (EB) beam hypothesis can also be derived with the help of Hamilton's principle and then solved by means of the Laplace transform technique. The impacts of nonlocal nanoscale and axial velocity on the different responses of the moving beam are investigated. The results reveal that phase delays, as well as the nonlocal parameter and external excitation load, have a substantial impact on the system's behavior.

CLC number: 65M60, 74A35, 74F05, 80A19

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AIMS Mathematics
Pages 2272-2295

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Cite this article:
Moaaz O, Abouelregal AE, Alsharari F. Lateral vibration of an axially moving thermoelastic nanobeam subjected to an external transverse excitation. AIMS Mathematics, 2023, 8(1): 2272-2295. https://doi.org/10.3934/math.2023118

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Received: 12 September 2022
Revised: 08 October 2022
Accepted: 08 October 2022
Published: 15 January 2023
©2023 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)