Asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer
We study the transient response of a thermoelastic structure made of two three-dimensional bodies connected by a thin adhesive layer. Once more we highlight the powerful flexibility of Trotter’s theory of approximation of semi-groups of operators acting on variable spaces: considering the geometrica...
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th-mahidol.846092023-06-19T00:12:03Z Asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer Licht C. Mahidol University Engineering We study the transient response of a thermoelastic structure made of two three-dimensional bodies connected by a thin adhesive layer. Once more we highlight the powerful flexibility of Trotter’s theory of approximation of semi-groups of operators acting on variable spaces: considering the geometrical and physical characteristics of the thin layer as parameters, we are able to show in a unitary way that this situation leads to a huge variety of limit models the properties of which are detailed. In particular, according to the relative behaviors of the different parameters involved, new features are evidenced such as the apparition of an added specific heat coefficient for the interface or of additional thermomechanical state variables defined not only on the limit geometric interface but on its cartesian product by any interval of real numbers. 2023-06-18T17:12:03Z 2023-06-18T17:12:03Z 2022-01-01 Article Comptes Rendus - Mecanique Vol.350 (2022) , 27-45 10.5802/crmeca.101 18737234 16310721 2-s2.0-85148740168 https://repository.li.mahidol.ac.th/handle/123456789/84609 SCOPUS |
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We study the transient response of a thermoelastic structure made of two three-dimensional bodies connected by a thin adhesive layer. Once more we highlight the powerful flexibility of Trotter’s theory of approximation of semi-groups of operators acting on variable spaces: considering the geometrical and physical characteristics of the thin layer as parameters, we are able to show in a unitary way that this situation leads to a huge variety of limit models the properties of which are detailed. In particular, according to the relative behaviors of the different parameters involved, new features are evidenced such as the apparition of an added specific heat coefficient for the interface or of additional thermomechanical state variables defined not only on the limit geometric interface but on its cartesian product by any interval of real numbers. |
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Licht C. |
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Asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer |
title_short |
Asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer |
title_full |
Asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer |
title_fullStr |
Asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer |
title_full_unstemmed |
Asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer |
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asymptotic analysis of the transient response of a thermoelastic assembly involving a thin layer |
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2023 |
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https://repository.li.mahidol.ac.th/handle/123456789/84609 |
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