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Nonlinear Analysis of Functionally Graded Circular Plates Under Different Loads and Boundary Conditions

Auteur(s):

Médium: article de revue
Langue(s): anglais
Publié dans: International Journal of Structural Stability and Dynamics, , n. 1, v. 8
Page(s): 131-159
DOI: 10.1142/s0219455408002582
Abstrait:

Geometrically nonlinear analysis of functionally graded circular plates subjected to mechanical and thermal loads is carried out in this paper. The Green–Lagrange strain tensor in its entirety is used in the analysis. The locally effective material properties are evaluated using homogenization method which is based on the Mori–Tanaka scheme. In the case of thermally loaded plates, the temperature variation through the thickness is determined by solving a steady-state heat transfer (i.e. energy) equation. As an example, a functionally gradient material circular plate composed of zirconium and aluminum is used and results are presented in graphical form.

Structurae ne peut pas vous offrir cette publication en texte intégral pour l'instant. Le texte intégral est accessible chez l'éditeur. DOI: 10.1142/s0219455408002582.
  • Informations
    sur cette fiche
  • Reference-ID
    10353133
  • Publié(e) le:
    14.08.2019
  • Modifié(e) le:
    14.08.2019
 
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