Malekzadeh et al., 2006 - Google Patents
Dynamic response of in-plane pre-stressed sandwich panels with a viscoelastic flexible core and different boundary conditionsMalekzadeh et al., 2006
View PDF- Document ID
- 18216809680296408022
- Author
- Malekzadeh K
- Khalili M
- Jafari A
- Mittal R
- Publication year
- Publication venue
- Journal of composite materials
External Links
Snippet
A new mathematical method and double Fourier series set of functions is developed to find out the local and global transverse and in-plane mode shapes, damped natural frequencies and modal loss factors in composite sandwich panels with multilayered laminated face …
- 230000004044 response 0 title abstract description 19
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Malekzadeh et al. | Local and global damped vibrations of plates with a viscoelastic soft flexible core: an improved high-order approach | |
Li et al. | Nonlinear vibration of sandwich beams with functionally graded negative Poisson’s ratio honeycomb core | |
Garg et al. | Higher-order closed-form solutions for free vibration of laminated composite and sandwich shells | |
Mohammadimehr et al. | Free vibration analysis of sandwich plate with a transversely flexible core and FG-CNTs reinforced nanocomposite face sheets subjected to magnetic field and temperature-dependent material properties using SGT | |
Belarbi et al. | On the free vibration analysis of laminated composite and sandwich plates: a layerwise finite element formulation | |
Pandey et al. | A new C0 higher-order layerwise finite element formulation for the analysis of laminated and sandwich plates | |
Safaei et al. | Effect of static and harmonic loading on the honeycomb sandwich beam by using finite element method | |
Zhang et al. | A simple first-order shear deformation theory for vibro-acoustic analysis of the laminated rectangular fluid-structure coupling system | |
Zhang et al. | Parameterization study on the moderately thick laminated rectangular plate-cavity coupling system with uniform or non-uniform boundary conditions | |
Garg et al. | Free vibration of skew fiber-reinforced composite and sandwich laminates using a shear deformable finite element model | |
Khalili et al. | Free vibrations of laminated composite shells with uniformly distributed attached mass using higher order shell theory including stiffness effect | |
Gupta et al. | Geometrically nonlinear dynamic analysis of variable stiffness composite laminated and sandwich shell panels | |
Cazzani et al. | A refined assumed strain finite element model for statics and dynamics of laminated plates | |
Osman et al. | Free vibration analysis of laminated composite beams using finite element method | |
Chen et al. | Vibration and damping performance of carbon fiber-reinforced polymer 3D double-arrow-head auxetic metamaterials | |
Gupta et al. | Nonlinear dynamic analysis of sandwich shell panels with auxetic honeycomb core and curvilinear fibre reinforced facesheets | |
Chadha et al. | Vibration analysis of composite laminated and sandwich conical shell structures: numerical and experimental investigation | |
Pandit et al. | Analysis of laminated sandwich plates based on an improved higher order zigzag theory | |
Diveyev et al. | Dynamic properties and damping predictions for laminated plates: High order theories–Timoshenko beam | |
Rodrigues et al. | Experimental and finite element modal analysis of variable stiffness composite laminated plates | |
Fiedler et al. | A generalized higher-order theory for multi-layered, shear-deformable composite plates | |
Malekzadeh et al. | Dynamic response of in-plane pre-stressed sandwich panels with a viscoelastic flexible core and different boundary conditions | |
Wang et al. | Structural-acoustic modeling and analysis of carbon/glass fiber hybrid composite laminates | |
Allam et al. | Bending response of inhomogeneous fiber-reinforced viscoelastic sandwich plates | |
Zhang et al. | Applications of VAM-based homogenization model in free and forced vibrations of sandwich plates with bowtie-shaped auxetic core |