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Journal ArticleDOI

On a generalized thermo-elastic problem in an infinite cylinder under initial stress

A. M. Elnagar, +1 more
- 01 Mar 1987 - 
- Vol. 37, Iss: 3, pp 213-223
TLDR
In this paper, the influence of the initial stress on the propagation of Rayleigh waves in a homogeneous-isotropic generalized thermo-elastic body, subject to the boundary conditions that the outer surface is traction free, was studied.
Abstract
In this paper we studied the influence of the initial stress on the propagation of Rayleigh waves in a homogeneous-isotropic, generalized thermo-elastic body, subject to the boundary conditions that the outer surface is traction free. In addition it is subject to linear radiations, adiabatic isothermal transfer conditions. We found that the frequency equation of Rayleigh waves contains a term involving the initial stress and, therefore, the phase velocity of Rayleigh waves changes with respect of this initial stress, when the initial stress, vanishes, the derived frequency equation reduces to that one obtained in classical generalized thermo-elastic case which includes the relaxation time of heat conduction.

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Citations
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Rayleigh waves in a magnetoelastic half-space of orthotropic material under influence of initial stress and gravity field

TL;DR: The frequency equation which determines the velocity of Rayleigh waves, including initial stress, gravity field and magnetic field, in a homogeneous orthotropic elastic medium has been obtained and the results indicate that the effect of orthotropy on such waves is small and can be neglected, while the effects ofInitial stress, magnetic field and gravity field are very pronounced.
Journal ArticleDOI

On Generalized Magneto-thermoelastic Rayleigh Waves in a Granular Medium Under the Influence of a Gravity Field and Initial Stress

TL;DR: In this paper, the influence of magnetic field, gravity field, initial stress and initial stress on Rayleigh wave propagation in a granular medium under incremental thermal stresses and relaxation times is studied.
Journal ArticleDOI

The propagation of thermal stresses in an infinite elastic slab

TL;DR: The one-dimensional dynamic thermal stresses in an infinite elastic slab is considered and the system of fundamental equations is solved by means of a finite difference method, which demonstrates a discontinuity in the stress.
Journal ArticleDOI

Magneto-thermo-viscoelastic interactions in an unbounded body with a spherical cavity subjected to a periodic loading

TL;DR: The generalized theory of thermoelasticity proposed by Green and Lindsay is applied to account for finite velocity of heat propagation and the results are displayed graphically to illustrate the effect of relaxation times and magnetic field are very pronounced.
Journal ArticleDOI

Propagation of a thermoelastic wave in a half-space of a homogeneous isotropic material subjected to the effect of gravity field

TL;DR: In this paper, the effect of gravity on the propagation of thermoelastic waves in a homogeneous, isotropic elastic semi-infinite space is investigated and compared with the results predicted by the theory of temperature and stress distribution in the absence of gravity.
References
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Journal ArticleDOI

Effect of thermal properties of a solid on the velocity of Rayleigh waves

TL;DR: In this article, the velocity of Rayleigh waves in an isotropic thermoelastic solid was determined from the classical equation by replacing the parameter β 2 = (λ + 2μ) μ occurring in that equation by (1 + ϵ) β2, where ϵ = γ 2 υ P 2 T (1+ v) 2 c(1 − v)
Journal ArticleDOI

Love waves due to a point source in an isotropic elastic medium under initial stress

TL;DR: In this article, the propagation of Love type waves due to a point source in an isotropic inhomogeneous medium under initial stress has been investigated and the Green's function technique developed by Ghosh (1963) has been used to solve the problem.
Journal ArticleDOI

Rayleigh waves in magneto-thermoelastic solids with thermal relaxation

TL;DR: In this paper, the propagation of Rayleigh waves in a semi-infinite body permeated by an uniform magnetostatic field parallel to the boundary surface is investigated and the roots of the frequency equation are calculated numerically.
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