Title of article
Size-dependent free flexural vibration behavior of functionally graded nanoplates
Author/Authors
Natarajan، نويسنده , , S. and Chakraborty، نويسنده , , S. and Thangavel، نويسنده , , M. and Bordas، نويسنده , , Harold S. and Rabczuk، نويسنده , , T.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
7
From page
74
To page
80
Abstract
In this paper, size dependent linear free flexural vibration behavior of functionally graded (FG) nanoplates are investigated using the iso-geometric based finite element method. The field variables are approximated by non-uniform rational B-splines. The nonlocal constitutive relation is based on Eringen’s differential form of nonlocal elasticity theory. The material properties are assumed to vary only in the thickness direction and the effective properties for the FG plate are computed using Mori–Tanaka homogenization scheme. The accuracy of the present formulation is demonstrated considering the problems for which solutions are available. A detailed numerical study is carried out to examine the effect of material gradient index, the characteristic internal length, the plate thickness, the plate aspect ratio and the boundary conditions on the global response of the FG nanoplate. From the detailed numerical study it is seen that the fundamental frequency decreases with increasing gradient index and characteristic internal length.
Keywords
Partition of unity , Internal length , Functionally Graded , Finite element , Mori–Tanaka , Eringen’s gradient elasticity , NURBS
Journal title
Computational Materials Science
Serial Year
2012
Journal title
Computational Materials Science
Record number
1690010
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