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State-space approach to a 2-D generalized thermoelastic medium under the effect of inclined load and gravity using a dual-phase-lag model
Faculty
Science
Year:
2022
Type of Publication:
ZU Hosted
Pages:
359-411
Authors:
Mohamed Ibrahim Ahmed Othman
Staff Zu Site
Abstract In Staff Site
Journal:
MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES Taylor & Francis
Volume:
50
Keywords :
State-space approach , , , generalized thermoelastic medium under , effect
Abstract:
The purpose of this paper is to study the effect of inclined loads and gravitational field on a thermoelastic solid in the context of the dual-phase-lag model (DPL). The inclined load is assumed to be a linear combination of a normal load and a tangential load. The Laplace and Fourier transform technique is used to solve the problem. The displacements, the stresses, and the temperature distribution so obtained in the physical domain are computed numerically. The variations of these quantities have been depicted graphically in the dual-phase-lag model (DPL), Lord-Shulman (L-S) theory and coupled (CD) theory for an insulated boundary to show the effect of the gravity and angle of inclination in the medium.
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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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Alaa Hassan Attia Hassan, "Multivalent Functions with Varying Arguments", International Center for Scientific Research and Studies, Irbid, Jordan, 2013
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Khaled Lotfy Mohamed Azab, "Effect of rotation for Two Temperature Generalized Thermoelasticity of Two-dimensional under thermal shock problem", Hindawi Publishing Corporation, 2013
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