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Buckling analysis of three-layered rectangular plate with piezoelectric layers

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper employs an analytical method to analyze the buckling of piezoelectric coupled plates with different boundary conditions on the basis of the first order shear deformation plate theory. The structure is composed of a host isotropic plate and two bonded piezo electric layers. Convergence study is performed in order to verify the numerical stability of the presented method. Also, the present analysis is validated by comparing the results with those in the literature, and then the critical buckling load of the piezoelectric coupled plates is presented in tabular and graphical forms for different plate aspect ratios, thickness of the piezoelectric, actuator voltage and boundary conditions.
Rocznik
Strony
813--826
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
  • Young Researchers and Elite Club, Central Tehran Branch, Islamic Azad University, Tehran, Iran
autor
  • K.N. Toosi University of Technology, Faculty of Mechanical Engineering, Tehran, Iran
Bibliografia
  • 1. Akhras G., Li W.C., 2008, Three-dimensional thermal buckling analysis of piezoelectric composite plates using the finite layer method, Smart Materials and Structures, 17, 1-8
  • 2. Brush D.O., Almroth B.O., 1975, Buckling of Bars, Plates, and Shells, McGraw-Hill, New York
  • 3. Correia V.M.F., Soares C.M.M., Soares C.A.M., 2003, Buckling optimization of composite laminated adaptive structures, Composite Structures, 62, 315-321
  • 4. Duc N.D., Ting H.V., 2010,Mechanical and thermal postbuckling of shear-deformable fgm plates with temperature-dependent properties, Mechanics of Composite Materials, 46, 461-476
  • 5. Dumir P.C., Kumari P., Kapuria S., 2009, Assessment of third order smeared and zigzag theories for buckling and vibration of flat angle-ply hybrid piezoelectric panels, Composite Structures, 90, 346-362
  • 6. Hosseini-Hashemi Sh., Khorshidi K., Amabili M., 2008, Exact solution for linear buckling of rectangular Mindlin plates, Journal of Sound and Vibration, 315, 318-342
  • 7. Kapuria S., Achary G.G.S., 2004, Exact 3-D piezoelasticity solution for buckling of hybryd cross-ply plates using transfer matrices, Acta Mechanica, 170, 25-45
  • 8. Kapuria S., Achary G.G.S., 2006, Nonlinear zigzag theory for electrothermomechanical buckling of piezoelectric composite and sandwich plates, Acta Mechanica, 184, 61-76
  • 9. Liew K.M., Yang J., Kitipornchai S., 2003, Postbuckling of piezoelectric FGM plates subject to thermo-electro mechanical loading, International Journal of Solids and Structures, 40, 15, 3869-3892
  • 10. Oh K., Han J.H., Lee I., 2000, Postbuckling and vibration characteristics of piezolaminated composite plate subject to thermopiezoelectric loads, Journal of Sound and Vibration, 233, 1, 19-40
  • 11. Reddy J.N., 1984, Energy Principles and Variational Methods in Applied Mechanics, John Wiley, New York
  • 12. Reddy J.N., 2004, Mechanics of Laminated Composite Plates and Shels: Theory and Analysis, CRC Press LLC, USA
  • 13. Shariyat M., 2009, Dynamic buckling of imperfect laminated plates with piezoelectric sensors and actuators subjected to thermo-electro-mechanical loadings, considering the temperature-dependency of the material properties, Composite Structures, 88, 228-239
  • 14. Shen H.-S., 2001a, Postbuckling of shear deformable laminated plates with piezoelectric actuators under complex loading conditions, International Journal of Solids and Structures, 38, 7703-7721
  • 15. Shen H.-S., 2001b, Thermal postbuckling of shear deformable laminated plates with piezoelectric actuators, Composites Science and Technology, 61, 1931-1943
  • 16. Shen H.-S., Zhu Z.H., 2011, Compressive and thermal postbuckling behaviors of laminated plates with piezoelectric fiber reinforced composite actuators, Applied Mathematical Modelling, 35, 1829-1845
  • 17. Varelis D., Saravanos D.A., 2004, Coupled buckling and postbuckling analysis of active laminated piezoelectric composite plates, International Journal of Solids and Structures, 41, 1519-1538
  • 18. Wylie C.R., Barrett L.C., 1951, Advanced Engineering Mathematics, New York, McGraw-Hill
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-791302a8-fc93-4c63-a59e-432ecd558532
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