In the paper the bending problem of moderately thick symmetrically laminated anisotropic plates is considered, based on the first-order transverse shear deformation plate theory. Using the method of plane wave decomposition and Hormander's operator method, the fundamental solution of the plates is p
Optimal Design of Symmetric Laminated Plates for Fundamental Frequency
โ Scribed by H. Fukunaga; H. Sekine; M. Sato
- Publisher
- Elsevier Science
- Year
- 1994
- Tongue
- English
- Weight
- 298 KB
- Volume
- 171
- Category
- Article
- ISSN
- 0022-460X
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โฆ Synopsis
The optimal laminate configurations of symmetric laminated plates for maximizing fundamental frequencies are examined. The coupling between bending and twisting is taken into consideration in the free vibration analysis of symmetric laminated plates. With the use of lamination parameters, the effect of bending-twisting coupling on the fundamental frequencies is discussed for the cases of simply supported or clamped edges.
The optimal laminate configuration to maximize the fundamental frequencies is also obtained by using a mathematical programming method in which four lamination parameters are used as design variables. The relation between the laminate configurations and the fundamental frequencies is discussed on the basis of the concept of lamination parameters.
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