1996
DOI: 10.1299/kikaia.62.474
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Thermal Stress and Deformation in Functionally Graded Material Shells of Revolution under Thermal Loading due to Fluid.

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Cited by 11 publications
(2 citation statements)
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“…Tornabene et al [9] used the FSDT to analyze the moderately thick conical, cylindrical, and annular plates made of functionally graded material. Takezono et al [10] presented an analytical formulation based on Sanders elastic shell theory and the finite difference method to examine the thermal stress and deformation for axisymmetrical shells made of FGM and subjected to thermal loading due to fluid. Matsunaga [11] analyzed free vibration and stability of FGM shallow shell with positive, zero and negative Gaussian curvature by using a 2-D higherorder deformation theory and taking into account the effects of transverse shear and normal deformations, and rotatory inertia.…”
Section: Introductionmentioning
confidence: 99%
“…Tornabene et al [9] used the FSDT to analyze the moderately thick conical, cylindrical, and annular plates made of functionally graded material. Takezono et al [10] presented an analytical formulation based on Sanders elastic shell theory and the finite difference method to examine the thermal stress and deformation for axisymmetrical shells made of FGM and subjected to thermal loading due to fluid. Matsunaga [11] analyzed free vibration and stability of FGM shallow shell with positive, zero and negative Gaussian curvature by using a 2-D higherorder deformation theory and taking into account the effects of transverse shear and normal deformations, and rotatory inertia.…”
Section: Introductionmentioning
confidence: 99%
“…Sasaki and Hirai [10] carried out experiments to estimate the fatigue resistance of a Si-graphite FGM. Other researchers [11][12][13][14][15] carried out thermal stress analyses of FGMs under various thermal loading conditions.…”
Section: Introductionmentioning
confidence: 99%