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Classical and generalized coupled thermoelasticity analysis in one-dimensional layered media

Hosseini Zad, S.K., A. Komeili, M.R. Eslami, and S. Fariborz (2012), Classical and generalized coupled thermoelasticity analysis in one-dimensional layered media, ARCHIVE OF APPLIED MECHANICS, 82(2), 267-282, doi:10.1007/s00419-011-0555-7.

Abstract
The behavior of thermoelastic waves at the interface of layered medium and distributions of these waves through the domain are examined by applying the direct finite element method to obtain the field variables directly within the spatial and temporal domains. The analysis is performed in a one-dimensional domain with two different layers to provide a means to follow the behavior of the reflected thermoelastic waves at the interface. It appears that the distributions of thermoelastic waves in an isotropic slab with one layer are significantly different from those in multilayered slabs. For instance, the negative displacement waves, several stresses with positive or negative signs and temperature distributions produced in the multilayered domains, are quite different from those in a single layer. This method may be generalized to simulate the propagation of thermoelastic waves in various multilayered regions and analyze the behavior of the layered composite structures under the mechanical or thermal impact loads.
Further information
BibTeX
@article{id1754,
  author = {S.K. Hosseini Zad and A. Komeili and M.R. Eslami and S. Fariborz},
  journal = {ARCHIVE OF APPLIED MECHANICS},
  number = {2},
  pages = {267-282},
  title = {{Classical and generalized coupled thermoelasticity analysis in one-dimensional layered media}},
  volume = {82},
  year = {2012},
  language = {en},
  url = {http://www.springerlink.com/content/w133n56110g321m5/},
  doi = {10.1007/s00419-011-0555-7},
}
EndNote
%0 Journal Article
%A Hosseini Zad, S.K.
%A Komeili, A.
%A Eslami, M.R.
%A Fariborz, S.
%D 2012
%N 2
%V 82
%J ARCHIVE OF APPLIED MECHANICS
%P 267-282
%T Classical and generalized coupled thermoelasticity analysis in one-dimensional layered media
%U http://www.springerlink.com/content/w133n56110g321m5/
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Printed 15. Dec 2019 22:23