Optimization dynamic responses of laminated multiphase shell in thermo-electro-mechanical conditions

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Abstract

The optimization for dynamic response associated with a cylindrical shell which is made of laminated composites embedded in a piezoelectric layer which is subjected to temperature rises and is resting on an elastic foundation is investigated for the first time. The first shear order theory (FSDT) is utilized in order to obtain the strain relations of the shell. Then, using the energy method, the equations of motions as well as boundary condition of the problem are attained. The formulation of this study together with the solution procedure which is a numerical solution method, differential quadrature method (DQM) is validated using other researches. This paper presents a thorough study on the parameters which impacts the vibration frequency of the laminated shell. The results of this paper shows that any type of laminated composite shell can reduce the vibration frequency providing that the angle related to layer are higher than 85 degrees. Also, in order to reduce the effect of temperature rises, the laminated composites instead of orthotropic one can be used.

Original languageEnglish
Pages (from-to)29-45
Number of pages17
JournalAdvances in Nano Research
Volume13
Issue number1
DOIs
StatePublished - Jul 2022

Keywords

  • dynamic responses
  • laminated multiphase shell
  • optimization
  • thermo-electro-mechanical conditions

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