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2D Analysis of Piezoelectric Layer Over a Rotating Micro-elongated Thermoelastic Medium with DPL Model
Faculty
Science
Year:
2022
Type of Publication:
ZU Hosted
Pages:
102-120
Authors:
Mohamed Ibrahim Ahmed Othman
Staff Zu Site
Abstract In Staff Site
Journal:
Journal of Materials Science & Nanotechnology Annex Publishers | www.annexpublishers.com
Volume:
10
Keywords :
, Analysis , Piezoelectric Layer Over , Rotating Micro-elongated
Abstract:
The Lord-Shulman theory with one relaxation time and the dual-phase-lag model with two relaxation times of thermoelasticity are used in this article to study the influence rotation micro-elongated thermoelastic layer, when a piezo electric layer is above it. To convert a partial differential equation to an ordinary differential equation, the normal mode method is utilized. Numerical computations are implemented for aluminum epoxy, and the results are charted. A comparison is made among the two theories in the complete absence and the presence of a rotation. The presence of a rotation has a major effect on all physical quantities.
Author Related Publications
Mohamed Ibrahim Ahmed Othman, "Effect of Magnetic Field on Thermoelastic Micro-Elongated Solid with Diffusion under Dual-Phase-Lag Model", World Scientific Publishing Company, 2021
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Mohamed Ibrahim Ahmed Othman, "Refined multi-phase-lags theory and Thomson effect on a micropolar thermoelastic medium with voids", Elsevier, 2021
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Mohamed Ibrahim Ahmed Othman, "Thermoelastic Theories on the Refracted Waves in Microstretch Thermoelastic Diffusion Media", World Scienti¯c Publishing Company, 2022
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Mohamed Ibrahim Ahmed Othman, "On the Effect of Thomson and Initial Stress in a Thermo-Porous Elastic Solid under G-N Electromagnetic Theory", www.mdpi.com/journal/symmetry, 2019
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Mohamed Ibrahim Ahmed Othman, "Analysis on plane waves through magneto-thermoelastic microstretch rotating medium with temperature dependent elastic properties", ElSevier, 2018
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Hany Samih Bayoumi Ibrahim, "Passive and active controllers for suppressing the torsional vibration of multiple-degree-of-freedom system", Sage, 2014
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