Characterization of the Vibration and Strain Energy Density of a Nanobeam under Two-Temperature Generalized Thermoelasticity with Fractional-Order Strain Theory

Alharthi, Hamzah Abdulrahman (2021) Characterization of the Vibration and Strain Energy Density of a Nanobeam under Two-Temperature Generalized Thermoelasticity with Fractional-Order Strain Theory. Mathematical and Computational Applications, 26 (4). p. 78. ISSN 2297-8747

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Abstract

In this work, fractional-order strain theory was applied to construct a novel model that introduces a thermal analysis of a thermoelastic, isotropic, and homogeneous nanobeam. Under supported conditions of fixed aspect ratios, a two-temperature generalized thermoelasticity theory based on one relaxation time was used. The governing differential equations were solved using the Laplace transform, and their inversions were found by applying the Tzou technique. The numerical solutions and results for a thermoelastic rectangular silicon nitride nanobeam were validated and supported in the case of ramp-type heating. Graphs were used to present the numerical results. The two-temperature model parameter, beam size, ramp-type heat, and beam thickness all have a substantial influence on all of the investigated functions. Moreover, the parameter of the ramp-type heat might be beneficial for controlling the damping of nanobeam energy.

Item Type: Article
Uncontrolled Keywords: nanobeam; two-temperature; thermoelasticity; silicon nitride; fractional-order strain; ramp-type heat
Subjects: Science Repository > Mathematical Science
Depositing User: Managing Editor
Date Deposited: 11 Nov 2022 04:46
Last Modified: 18 Sep 2023 10:36
URI: http://research.manuscritpub.com/id/eprint/85

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