A simple and accurate mixed FE-DQ formulation for free vibration of rectangular and skew Mindlin plates with general boundary conditions
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Publication:399858
DOI10.1007/s11012-012-9657-8zbMath1293.74411OpenAlexW1984739618MaRDI QIDQ399858
Publication date: 20 August 2014
Published in: Meccanica (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11012-012-9657-8
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A strong formulation finite element method (SFEM) based on RBF and GDQ techniques for the static and dynamic analyses of laminated plates of arbitrary shape ⋮ Nonlinear flutter behavior of a plate with motion constraints in subsonic flow ⋮ A mixed modal-differential quadrature method for free and forced vibration of beams in contact with fluid ⋮ Vibration band gap properties of periodic Mindlin plate structure using the spectral element method ⋮ A note on mathematical treatment of the Dirac-delta function in the differential quadrature bending and forced vibration analysis of beams and rectangular plates subjected to concentrated loads ⋮ Pressure-based and potential-based mixed Ritz-differential quadrature formulations for free and forced vibration of Timoshenko beams in contact with fluid
Cites Work
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- A mixed method for free and forced vibration of rectangular plates
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- Numerical aspects for free vibration of thick plates. I: Formulation and verification. II: Numerical efficiency and vibration frequencies
- Mixed finite element and differential quadrature method for free and forced vibration and buckling analysis of rectangular plates
- Exact characteristic equations for some of classical boundary conditions of vibrating moderately thick rectangular plates
- Differential quadrature and longterm integration
- Natural vibrations of shear deformable rhombic plates with clamped and free edge conditions
- Vibration Of Thick Skew Plates Based On Mindlin Shear Deformation Plate Theory
- DSC‐Ritz method for the free vibration analysis of Mindlin plates
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