Bending and vibration analyses of a rotating sandwich cylindrical shell considering nanocomposite core and piezoelectric layers subjected to thermal and magnetic fields
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Publication:1706333
DOI10.1007/s10483-018-2301-6zbMath1382.74085OpenAlexW2783377250MaRDI QIDQ1706333
Publication date: 22 March 2018
Published in: AMM. Applied Mathematics and Mechanics. (English Edition) (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10483-018-2301-6
Vibrations in dynamical problems in solid mechanics (74H45) Composite and mixture properties (74E30) Shells (74K25)
Related Items (6)
Large deflection response-based geometrical nonlinearity of nanocomposite structures reinforced with carbon nanotubes ⋮ Vibration analysis of piezoelectric sandwich nanobeam with flexoelectricity based on nonlocal strain gradient theory ⋮ Effect of porosity on free and forced vibration characteristics of the GPL reinforcement composite nanostructures ⋮ Nonclassical Analysis of Frequency and Instability for Piezoelectric Biomedical Nanosensor based on Cylindrical Nanoshell ⋮ Vibration analysis of FG annular sector in moderately thick plates with two piezoelectric layers ⋮ Study on theoretical modeling and vibration performance of an assembled cylindrical shell-plate structure with whirl motion
Cites Work
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- Electro-thermo-mechanical torsional buckling of a piezoelectric polymeric cylindrical shell reinforced by DWBNNTs with an elastic core
- Static bending and free vibration of a functionally graded piezoelectric microplate based on the modified couple-stress theory
- Vibration of carbon nanotube reinforced composite beams based on the first and third order beam theories
- Nonlinear thermal dynamic analysis of eccentrically stiffened S-FGM circular cylindrical shells surrounded on elastic foundations using the Reddy's third-order shear deformation shell theory
- Meshless modeling of geometrically nonlinear behavior of CNT-reinforced functionally graded composite laminated plates
- Vibration of functionally graded cylindrical shells
- Three-dimensional nonlinear thermo-elastic analysis of functionally graded cylindrical shells with piezoelectric layers by differential quadrature method
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