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Influences of angular velocity and periodic axial load on the dynamic instability of functionally graded porous cylindrical panels

  • 01-04-2023
  • Original
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Abstract

The study investigates the dynamic instability of functionally graded porous (FGP) cylindrical panels subjected to spinning motion and periodic axial loads. It delves into the effects of angular velocity and periodic axial load on the stability of these panels, which are crucial components in various engineering applications. The research adopts a theoretical approach based on Hamilton’s principle and first-order shear deformation theory (FSDT), applying the Galerkin method to derive excitation frequencies. The paper presents numerical results that highlight the influences of porosity distribution, porosity coefficient, static and dynamic loads, rotating speed, Coriolis acceleration, hoop stress, circumferential wave number, and geometric parameters on the instability of the rotating FGP cylindrical panels. The study also introduces three types of porosity distributions and their regulation equations, providing a detailed analysis of each type's impact on panel stability. The findings contribute to a deeper understanding of the behavior of FGP cylindrical panels under complex loading conditions, offering valuable insights for engineers and scientists in the field.

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Title
Influences of angular velocity and periodic axial load on the dynamic instability of functionally graded porous cylindrical panels
Authors
Salah M. Zaidan
Hamad M. Hasan
Publication date
01-04-2023
Publisher
Springer Berlin Heidelberg
Published in
Archive of Applied Mechanics / Issue 7/2023
Print ISSN: 0939-1533
Electronic ISSN: 1432-0681
DOI
https://doi.org/10.1007/s00419-023-02407-2
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