| نویسندگان | محمد عارفی-غلامحسین رحیمی |
| نشریه | SMART STRUCT SYST |
| تاریخ انتشار | 2014-7-01 |
| نمایه نشریه | ISI ,SCOPUS |
چکیده مقاله
The present study deals with two dimensional electro-elastic analysis of a functionally graded
piezoelectric (FGP) cylinder under internal pressure. Energy method and first order shear deformation
theory (FSDT) are employed for this purpose. All mechanical and electrical properties except Poisson ratio
are considered as a power function along the radial direction. The cylinder is subjected to uniform internal
pressure. By supposing two dimensional displacement and electric potential fields along the radial and axial
direction, the governing differential equations can be derived in terms of unknown electrical and mechanical
functions. Homogeneous solution can be obtained by imposing the appropriate mechanical and electrical
boundary conditions. This proposed solution has capability to solve the cylinder structure with arbitrary
boundary conditions. The previous solutions have been proposed for the problem with simple boundary
conditions (simply supported cylinder) by using the routine functions such as trigonometric functions. The
axial distribution of the axial displacement, radial displacement and electric potential of the cylinder can be
presented as the important results of this paper for various non homogeneous indexes. This paper evaluates
the effect of a local support on the distribution of mechanical and electrical components. This investigation
indicates that a support has important influence on the distribution of mechanical and electrical components
rather than a cylinder with ignoring the effect of the supports. Obtained results using present method at
regions that are adequate far from two ends of the cylinder can be compared with previous results (plane
elasticity and one dimensional first order shear deformation theories).