Title of article
Thermal Buckling Graded Beams of Functionally
Author/Authors
Shahsiah, R islamic azad university - Tehran Central Branch - Mechanical Engineering Department, ايران , Nikbin, K.M amirkabir university of technology - Mechanical Engineering Department, تهران, ايران , Eslami, M.R Imperial College - Mechanical Engineering Department, United Kingdom
From page
64
To page
81
Abstract
In this article, thermal stability of beams made of functionally graded material (FGM) is considered. The derivations of equations are based on the one-dimensional theory of elasticity. The material properties vary continuously through the thickness direction. Tanigawa s model for the variation of Poisson s ratio, the modulus of shear stress, and the coefficient of thermal expansion is considered. The equilibrium and stability equations for the functionally graded beam under thermal loading are derived using the variational and force summation methods. A beam containing six different types of boundary conditions is considered and closed form solutions for the critical normalized thermal buckling loads related to the uniform temperaturerise and axial temperature difference are obtained. The resultsare reduced to the buckling formula of beams made of pure isotropic materials.
Journal title
Iranian Journal of Mechanical Engineering Transactions of the ISME
Journal title
Iranian Journal of Mechanical Engineering Transactions of the ISME
Record number
2670813
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