Electromechanical behavior of piezolaminated shell structures with imperfect functionally graded porous materials using an improved solid-shell element
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Publication:6189245
DOI10.1016/J.CAMWA.2023.11.036MaRDI QIDQ6189245
S. Kalleli, H. Mellouli, Fakhreddine Dammak, H. Mallek, B. Ayadi, Lamjed ben Said
Publication date: 8 February 2024
Published in: Computers \& Mathematics with Applications (Search for Journal in Brave)
Cites Work
- User defined finite element for modeling and analysis of active piezoelectric shell structures
- A hybrid-stress solid-shell element for non-linear analysis of piezoelectric structures
- Geometrically non-linear analysis of FG-CNTRC shell structures with surface-bonded piezoelectric layers
- Nonlinear static and dynamic hygrothermal buckling analysis of imperfect functionally graded porous cylindrical shells
- Characteristic orthogonal polynomials-Ritz method for vibration behavior of functionally graded piezoelectric plates using FSDT
- Bending and free vibration analysis of functionally graded plates made of porous materials according to a novel the semi-analytical method
- Analytical and meshless DQM approaches to free vibration analysis of symmetric FGM porous nanobeams with piezoelectric effect
- A new model to study magnetic-electric fields effects on bending of nano-scale magneto-electro-elastic beams
- A new structure study: vibrational analyses of FGM convex-concave shells subjected to electro-thermal-mechanical loads surrounded by Pasternak foundation
- Effect of hyperbolic heat conduction on the linear and nonlinear vibration of CNT reinforced size-dependent functionally graded microbeams
- A piezoelectric 3D hexahedral curvilinear finite element based on the space fiber rotation concept
- Optimal placement and active vibration control for piezoelectric smart flexible cantilever plate
- A geometrically non-linear piezoelectric solid shell element based on a mixed multi-field variational formulation
- A class of mixed assumed strain methods and the method of incompatible modes
- A modified first shear deformation theory for three-dimensional thermal post-buckling analysis of FGM plates
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