DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATING

The axially symmetric quasistatic problem on thermoelasticity for the functionally graded half-space, with elasticity modulus, Poisson ratio, heat conduction, and linear expansion coefficients varying continuously in the near-surface layer is considered. It is supposed that the area in the circle wi...

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Main Authors: Leonid Ivanovich Krenev, Sergey Mikhailovich Aizikovich, Boris Igorevich Mitrin
Format: Article
Language:Russian
Published: Don State Technical University 2018-06-01
Series:Вестник Донского государственного технического университета
Subjects:
Online Access:https://vestnik.donstu.ru/jour/article/view/389
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spelling doaj-62148c63e4fb4d3c9d0fb03867e9988d2020-11-25T02:49:01ZrusDon State Technical UniversityВестник Донского государственного технического университета1992-59801992-60062018-06-01133-4515382DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATINGLeonid Ivanovich Krenev0Sergey Mikhailovich Aizikovich1Boris Igorevich Mitrin2Don State Technical University. RussiaDon State Technical University. RussiaDon State Technical University. RussiaThe axially symmetric quasistatic problem on thermoelasticity for the functionally graded half-space, with elasticity modulus, Poisson ratio, heat conduction, and linear expansion coefficients varying continuously in the near-surface layer is considered. It is supposed that the area in the circle with the known radius is being heated by the heat source with time-constant temperature. Outside the circle, the surface is perfectly insulated. Analytic methods, particularly, Hankel integral transform, are used to solve the problem. At first, the solution is reduced to solving a two-point boundary problem for the ODEs system with varying coefficients of the sixth order. The modulating functions method is used to provide a stable numerical solution to the ordinary differential system. As a result, the solution to the mixed boundary problem is reduced to solving the dual integral equation. The kernel transform properties allow applying a well-established evolutionary bilateral asymptotical method. The heat flow approximation and the half-space surface displacement are determined through this method. The numerical results showing the curvature of the inhomogeneous half-space surface under the influence of the uniform temperature within the unit circle are given for various cases of the mechanical and temperature property changes in the near-surface layer. The following cases are considered: when the coating property value does not differ from the corresponding substrate property value, and when the coating value differs two times (to the higher or smaller side) on the surface, and linearly decreases (grows) in depth up to the property value in the substrate. It is shown that the ultimate effect on the maximum surface riser is caused by the oppositely directed changes in the thermal conductivity and linear expansion coefficients in the coating.https://vestnik.donstu.ru/jour/article/view/389mixed problemsinhomogeneous materialsthermoelasticityfunctionally-graded materialsanalytical solution.
collection DOAJ
language Russian
format Article
sources DOAJ
author Leonid Ivanovich Krenev
Sergey Mikhailovich Aizikovich
Boris Igorevich Mitrin
spellingShingle Leonid Ivanovich Krenev
Sergey Mikhailovich Aizikovich
Boris Igorevich Mitrin
DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATING
Вестник Донского государственного технического университета
mixed problems
inhomogeneous materials
thermoelasticity
functionally-graded materials
analytical solution.
author_facet Leonid Ivanovich Krenev
Sergey Mikhailovich Aizikovich
Boris Igorevich Mitrin
author_sort Leonid Ivanovich Krenev
title DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATING
title_short DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATING
title_full DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATING
title_fullStr DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATING
title_full_unstemmed DETERMINATION OF SURFACE DEFORMATION OF CONTINUOUSLY INHOMOGENEOUS THERMOELASTIC HALF-SPACE UNDER LOCAL HEATING
title_sort determination of surface deformation of continuously inhomogeneous thermoelastic half-space under local heating
publisher Don State Technical University
series Вестник Донского государственного технического университета
issn 1992-5980
1992-6006
publishDate 2018-06-01
description The axially symmetric quasistatic problem on thermoelasticity for the functionally graded half-space, with elasticity modulus, Poisson ratio, heat conduction, and linear expansion coefficients varying continuously in the near-surface layer is considered. It is supposed that the area in the circle with the known radius is being heated by the heat source with time-constant temperature. Outside the circle, the surface is perfectly insulated. Analytic methods, particularly, Hankel integral transform, are used to solve the problem. At first, the solution is reduced to solving a two-point boundary problem for the ODEs system with varying coefficients of the sixth order. The modulating functions method is used to provide a stable numerical solution to the ordinary differential system. As a result, the solution to the mixed boundary problem is reduced to solving the dual integral equation. The kernel transform properties allow applying a well-established evolutionary bilateral asymptotical method. The heat flow approximation and the half-space surface displacement are determined through this method. The numerical results showing the curvature of the inhomogeneous half-space surface under the influence of the uniform temperature within the unit circle are given for various cases of the mechanical and temperature property changes in the near-surface layer. The following cases are considered: when the coating property value does not differ from the corresponding substrate property value, and when the coating value differs two times (to the higher or smaller side) on the surface, and linearly decreases (grows) in depth up to the property value in the substrate. It is shown that the ultimate effect on the maximum surface riser is caused by the oppositely directed changes in the thermal conductivity and linear expansion coefficients in the coating.
topic mixed problems
inhomogeneous materials
thermoelasticity
functionally-graded materials
analytical solution.
url https://vestnik.donstu.ru/jour/article/view/389
work_keys_str_mv AT leonidivanovichkrenev determinationofsurfacedeformationofcontinuouslyinhomogeneousthermoelastichalfspaceunderlocalheating
AT sergeymikhailovichaizikovich determinationofsurfacedeformationofcontinuouslyinhomogeneousthermoelastichalfspaceunderlocalheating
AT borisigorevichmitrin determinationofsurfacedeformationofcontinuouslyinhomogeneousthermoelastichalfspaceunderlocalheating
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