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Bending and Vibration of Laminated Plates by a Layerwise Formulation and Collocation with Radial Basis Functions
This article addresses the static deformations and free vibration analysis of laminated composite and sandwich plates by collocation with radial basis functions, according to a layerwise formulation. The present layerwise approach accounts for through-the-thickness deformations. The equations of motion and the boundary conditions are obtained by the Carrera’s Unified Formulation, and further interpolated by collocation with radial basis functions.
Bending and Vibration of Laminated Plates by a Layerwise Formulation and Collocation with Radial Basis Functions
This article addresses the static deformations and free vibration analysis of laminated composite and sandwich plates by collocation with radial basis functions, according to a layerwise formulation. The present layerwise approach accounts for through-the-thickness deformations. The equations of motion and the boundary conditions are obtained by the Carrera’s Unified Formulation, and further interpolated by collocation with radial basis functions.
Bending and Vibration of Laminated Plates by a Layerwise Formulation and Collocation with Radial Basis Functions
Ferreira, A.J.M. (author) / Roque, C.M.C. (author) / Carrera, E. (author) / Cinefra, M. (author) / Polit, O. (author)
Mechanics of Advanced Materials and Structures ; 20 ; 624-637
2013
14 Seiten
Article (Journal)
English
Analysis of Composite Plates using a Layerwise Theory and Radial Basis Functions
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