Free vibration analysis of embedded functionally graded carbon nanotube-reinforced composite conical/cylindrical shells and annular plates using a numerical approach
DOI10.1177/1077546316659172zbMath1400.74032OpenAlexW2505100261MaRDI QIDQ4554629
M. Faghih Shojaei, Jalal Torabi, Reza Ansari
Publication date: 9 November 2018
Published in: Journal of Vibration and Control (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1177/1077546316659172
variational formulationvibrationelastic foundationannular platesconical and cylindrical shellsfunctionally graded carbon nanotube-reinforced composite materials
Vibrations in dynamical problems in solid mechanics (74H45) Plates (74K20) Inhomogeneity in solid mechanics (74E05) Composite and mixture properties (74E30) Shells (74K25)
Related Items (5)
Cites Work
- Unnamed Item
- Computation of vibration solution for functionally graded carbon nanotube-reinforced composite thick plates resting on elastic foundations using the element-free IMLS-Ritz method
- The effects of carbon nanotube orientation and aggregation on vibrational behavior of functionally graded nanocomposite cylinders by a mesh-free method
- Nonlinear vibration of nanotube-reinforced composite cylindrical shells in thermal environments
- Postbuckling of carbon nanotube-reinforced functionally graded cylindrical panels under axial compression using a meshless approach
- Free vibration analysis of functionally graded carbon nanotube-reinforced composite cylindrical panel embedded in piezoelectric layers by using theory of elasticity
- Nonlinear vibration analysis of Timoshenko nanobeams based on surface stress elasticity theory
- Vibration of functionally graded cylindrical shells
- A novel variational numerical method for analyzing the free vibration of composite conical shells
- Nonlinear vibration of functionally graded fiber-reinforced composite laminated cylindrical shells in hygrothermal environments
- Application of a Hybrid Mesh-free Method Based on Generalized Finite Difference (GFD) Method for Natural Frequency Analysis of Functionally Graded Nanocomposite Cylinders Reinforced by Carbon Nanotubes
- Nonlinear Vibrations and Stability of Shells and Plates
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