Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic Medium

A formal solution based on integral transforms and matrix analysis is given for the nonstationary fields of temperature, heat flux, stresses and displacements of a multilayered elastic medium. Non-linearities, inertia- and coupling effects are not taken into account. The applicability of the theory...

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Main Authors: H. Bufler, G. Meier
Format: Article
Language:English
Published: Institute of Fundamental Technological Research 1975-03-01
Series:Engineering Transactions
Online Access:https://et.ippt.pan.pl/index.php/et/article/view/2344
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author H. Bufler
G. Meier
author_facet H. Bufler
G. Meier
author_sort H. Bufler
collection DOAJ
description A formal solution based on integral transforms and matrix analysis is given for the nonstationary fields of temperature, heat flux, stresses and displacements of a multilayered elastic medium. Non-linearities, inertia- and coupling effects are not taken into account. The applicability of the theory is demonstrated by means of numerically worked out examples. Extension to viscoelastic media is indicated.
format Article
id doaj-art-93093d76bcaa401fbd7f84ad23395546
institution Kabale University
issn 0867-888X
2450-8071
language English
publishDate 1975-03-01
publisher Institute of Fundamental Technological Research
record_format Article
series Engineering Transactions
spelling doaj-art-93093d76bcaa401fbd7f84ad233955462025-08-20T03:49:50ZengInstitute of Fundamental Technological ResearchEngineering Transactions0867-888X2450-80711975-03-01231Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic MediumH. Bufler0G. Meier1Institut fur Mechanik (Bauwesen), Lehrstuhl IIInstitut fur Mechanik (Bauwesen), Lehrstuhl II A formal solution based on integral transforms and matrix analysis is given for the nonstationary fields of temperature, heat flux, stresses and displacements of a multilayered elastic medium. Non-linearities, inertia- and coupling effects are not taken into account. The applicability of the theory is demonstrated by means of numerically worked out examples. Extension to viscoelastic media is indicated. https://et.ippt.pan.pl/index.php/et/article/view/2344
spellingShingle H. Bufler
G. Meier
Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic Medium
Engineering Transactions
title Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic Medium
title_full Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic Medium
title_fullStr Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic Medium
title_full_unstemmed Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic Medium
title_short Nonstationary Temperature Distribution and Thermal Stresses in a Layered Elastic or Viscoelastic Medium
title_sort nonstationary temperature distribution and thermal stresses in a layered elastic or viscoelastic medium
url https://et.ippt.pan.pl/index.php/et/article/view/2344
work_keys_str_mv AT hbufler nonstationarytemperaturedistributionandthermalstressesinalayeredelasticorviscoelasticmedium
AT gmeier nonstationarytemperaturedistributionandthermalstressesinalayeredelasticorviscoelasticmedium