Random vibration of the functionally graded laminates in thermal environments


Autoria(s): Kitipornchai, S.; Yang, J.; Liew, K. M.
Contribuinte(s)

J. T. Oden

M. Papadrakakis

T. J. R. Hughes

Data(s)

01/01/2006

Resumo

This work deals with the random free vibration of functionally graded laminates with general boundary conditions and subjected to a temperature change, taking into account the randomness in a number of independent input variables such as Young's modulus, Poisson's ratio and thermal expansion coefficient of each constituent material. Based on third-order shear deformation theory, the mixed-type formulation and a semi-analytical approach are employed to derive the standard eigenvalue problem in terms of deflection, mid-plane rotations and stress function. A mean-centered first-order perturbation technique is adopted to obtain the second-order statistics of vibration frequencies. A detailed parametric study is conducted, and extensive numerical results are presented in both tabular and graphical forms for laminated plates that contain functionally graded material which is made of aluminum and zirconia, showing the effects of scattering in thermo-clastic material constants, temperature change, edge support condition, side-to-thickness ratio, and plate aspect ratio on the stochastic characteristics of natural frequencies. (c) 2005 Elsevier B.V. All rights reserved.

Identificador

http://espace.library.uq.edu.au/view/UQ:80729

Idioma(s)

eng

Publicador

Elsevier Science Sa

Palavras-Chave #Free Vibration #Frequency #Random Material Properties #Functionally Graded Material #Plate #Higher-order Shear Deformation Theory #Mathematics, Interdisciplinary Applications #Engineering, Multidisciplinary #Mechanics #Nonlinear Vibration #Composite Plates #Piezoelectric Sensors #Dynamic-response #Fgm Plates #Actuators #Cylinder #Shells #C1 #290800 Civil Engineering #669900 Other
Tipo

Journal Article