Title of article :
Elasticity solutions for plane anisotropic functionally graded beams
Author/Authors :
C.W. Lim and H.J. Ding، نويسنده , , D.J. Huang and C.T. Chen، نويسنده , , W.Q. Chen and B.S. Wang، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
This paper considers the plane stress problem of generally anisotropic beams with elastic compliance parameters being
arbitrary functions of the thickness coordinate. Firstly, the partial differential equation, which is satisfied by the Airy stress
function for the plane problem of anisotropic functionally graded materials and involves the effect of body force, is derived.
Secondly, a unified method is developed to obtain the stress function. The analytical expressions of axial force, bending
moment, shear force and displacements are then deduced through integration. Thirdly, the stress function is employed to
solve problems of anisotropic functionally graded plane beams, with the integral constants completely determined from
boundary conditions. A series of elasticity solutions are thus obtained, including the solution for beams under tension
and pure bending, the solution for cantilever beams subjected to shear force applied at the free end, the solution for cantilever
beams or simply supported beams subjected to uniform load, the solution for fixed–fixed beams subjected to uniform
load, and the one for beams subjected to body force, etc. These solutions can be easily degenerated into the elasticity solutions
for homogeneous beams. Some of them are absolutely new to literature, and some coincide with the available solutions.
It is also found that there are certain errors in several available solutions. A numerical example is finally presented to show
the effect of material inhomogeneity on the elastic field in a functionally graded anisotropic cantilever beam.
Keywords :
Anisotropic , Functionally graded material , Elasticity solution , Plane beam , Stress function
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures