An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weight
The exact solution of the uncoupled thermoelasticity problem for a semi-infinite elastic layer with regard of its proper weight was constructed. The solving method is differ from the known previous and is based on reducing of Lame equations to two jointly and one separately solvable equation. It all...
Saved in:
Main Authors: | , |
---|---|
Format: | Article |
Language: | English |
Published: |
Gruppo Italiano Frattura
2019-03-01
|
Series: | Fracture and Structural Integrity |
Subjects: | |
Online Access: | https://www.fracturae.com/index.php/fis/article/view/2332 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
_version_ | 1841562864142254080 |
---|---|
author | Anna Fesenko Nataly Vaysfeld |
author_facet | Anna Fesenko Nataly Vaysfeld |
author_sort | Anna Fesenko |
collection | DOAJ |
description | The exact solution of the uncoupled thermoelasticity problem for a semi-infinite elastic layer with regard of its proper weight was constructed. The solving method is differ from the known previous and is based on reducing of Lame equations to two jointly and one separately solvable equation. It allows application of integral transformations directly to the transformed equations of equilibrium and makes it possible to reduce the initial problem to a one-dimensional vector boundary problem. A special technique is given to calculate multiple integrals containing oscillating functions that appear during the inversion of the transformations. The character of the temperature and proper weight influence on the value of normal stresses on the lateral face of the semi-infinite layer, the zone of tensile stresses depending on the shapes of the distributed load section and the temperature and Poisson's ratio is established. The parameters of dimensionless mechanical load and temperature, when the separation of the side wall of the semi-infinite layer can be eliminated, were established. A study of the influence of the layer’s proper weight on the stress emerging on the layer’s edge is conducted. The constructed exact solution can be used as a model for solving a similar class of problems by numerical methods. |
format | Article |
id | doaj-art-a1c6700eb33d4a13974d549c0adc01a3 |
institution | Kabale University |
issn | 1971-8993 |
language | English |
publishDate | 2019-03-01 |
publisher | Gruppo Italiano Frattura |
record_format | Article |
series | Fracture and Structural Integrity |
spelling | doaj-art-a1c6700eb33d4a13974d549c0adc01a32025-01-03T00:39:57ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932019-03-011348An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weightAnna Fesenko0Nataly VaysfeldOdessa I. I. Mechnikov National UniversityThe exact solution of the uncoupled thermoelasticity problem for a semi-infinite elastic layer with regard of its proper weight was constructed. The solving method is differ from the known previous and is based on reducing of Lame equations to two jointly and one separately solvable equation. It allows application of integral transformations directly to the transformed equations of equilibrium and makes it possible to reduce the initial problem to a one-dimensional vector boundary problem. A special technique is given to calculate multiple integrals containing oscillating functions that appear during the inversion of the transformations. The character of the temperature and proper weight influence on the value of normal stresses on the lateral face of the semi-infinite layer, the zone of tensile stresses depending on the shapes of the distributed load section and the temperature and Poisson's ratio is established. The parameters of dimensionless mechanical load and temperature, when the separation of the side wall of the semi-infinite layer can be eliminated, were established. A study of the influence of the layer’s proper weight on the stress emerging on the layer’s edge is conducted. The constructed exact solution can be used as a model for solving a similar class of problems by numerical methods.https://www.fracturae.com/index.php/fis/article/view/2332Uncoupled Thermoelasticity ProblemSemi-infinite LayerProper WeightTensile Stress |
spellingShingle | Anna Fesenko Nataly Vaysfeld An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weight Fracture and Structural Integrity Uncoupled Thermoelasticity Problem Semi-infinite Layer Proper Weight Tensile Stress |
title | An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weight |
title_full | An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weight |
title_fullStr | An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weight |
title_full_unstemmed | An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weight |
title_short | An uncoupled thermoelasticity problem for a semi-infinite layer with regard of its proper weight |
title_sort | uncoupled thermoelasticity problem for a semi infinite layer with regard of its proper weight |
topic | Uncoupled Thermoelasticity Problem Semi-infinite Layer Proper Weight Tensile Stress |
url | https://www.fracturae.com/index.php/fis/article/view/2332 |
work_keys_str_mv | AT annafesenko anuncoupledthermoelasticityproblemforasemiinfinitelayerwithregardofitsproperweight AT natalyvaysfeld anuncoupledthermoelasticityproblemforasemiinfinitelayerwithregardofitsproperweight AT annafesenko uncoupledthermoelasticityproblemforasemiinfinitelayerwithregardofitsproperweight AT natalyvaysfeld uncoupledthermoelasticityproblemforasemiinfinitelayerwithregardofitsproperweight |