A Combined Fourier Series–Galerkin Method for the Analysis of Functionally Graded Beams

Author:

Zhu H.1,Sankar B. V.1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL 32611-6250

Abstract

The method of Fourier analysis is combined with the Galerkin method for solving the two-dimensional elasticity equations for a functionally graded beam subjected to transverse loads. The variation of the Young’s modulus through the thickness is given by a polynomial in the thickness coordinate and the Poisson’s ratio is assumed to be constant. The Fourier series method is used to reduce the partial differential equations to a pair of ordinary differential equations, which are solved using the Galerkin method. Results for bending stresses and transverse shear stresses in various beams show excellent agreement with available exact solutions. The method will be useful in analyzing functionally graded structures with arbitrary variation of properties.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference7 articles.

1. Suresh, S., and Mortensen, A., 1998, Fundamentals of Functionally Graded Materials, IOM Communications Ltd., London.

2. Pindera, M.-J., and Dunn, P., 1995, “An Evaluation of Coupled Microstructural Approach for the Analysis of Functionally Graded Composites via the Finite Element Method,” NASA CR 195455, Lewis Research Center, Cleveland, OH.

3. Delale, F., and Erdogan, F., 1983, “The Crack Problem for a Nonhomogeneous Plane,” ASME J. Appl. Mech., 50, pp. 609–614.

4. Sankar, B. V. , 2001, “An Elasticity Solution for Functionally Graded Beams,” Compos. Sci. Technol., 61, pp. 689–696.

5. Sankar, B. V., and Tzeng, J. T., 2002, “Thermal Stresses in Functionally Graded Beams,” AIAA J., 40(6), pp. 1228–1232.

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