Finite rotation FE-simulation and active vibration control of smart composite laminated structures
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Publication:2341510
DOI10.1007/s00466-015-1132-7zbMath1334.74086OpenAlexW2050407536MaRDI QIDQ2341510
Mekala N. Rao, Rüdiger Schmidt, Kai-Uwe Schröder
Publication date: 24 April 2015
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-015-1132-7
Vibrations in dynamical problems in solid mechanics (74H45) Finite element methods applied to problems in solid mechanics (74S05) Composite and mixture properties (74E30)
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Uses Software
Cites Work
- On a moderate rotation theory of laminated anisotropic shells. I: Theory
- Nonlinear free and forced vibration of simply supported shear deformable laminated plates with piezoelectric actuators
- Refined theories of elastic anisotropic shells accounting for small strains and moderate rotations
- A refined nonlinear model of composite plates with integrated piezoelectric actuators and sensors
- Finite elements based on a first-order shear deformation moderate rotation shell theory with applications to the analysis of composite structures
- Finite element analysis of smooth, folded and multi-shell structures
- Finite dynamic deformations of smart structures
- Piezolaminated beams with large deformations
- Large deformation finite element analyses of composite structures integrated with piezoelectric sensors and actuators
- A theoretical analysis of piezoelectric/composite anisotropic laminate with larger-amplitude deflection effect. I: fundamental equations
- COMPARISON OF VIBRATION CHARACTERISTICS FOR POSTBUCKLED FGM PLATES WITH PIEZOELECTRIC FIBER REINFORCED COMPOSITE ACTUATORS
- Active control of geometrically nonlinear transient vibration of composite plates with piezoelectric actuators
- POSTBUCKLING AND VIBRATION CHARACTERISTICS OF PIEZOLAMINATED COMPOSITE PLATE SUBJECT TO THERMO-PIEZOELECTRIC LOADS
- A finite element formulation for piezoelectric shell structures considering geometrical and material non-linearities
- An advanced finite element formulation for piezoelectric shell structures
- Geometrically nonlinear composite shells with integrated piezoelectric layers
- Active control of nonlinear dynamic response of space-frames using piezo-electric actuators
- A robust non-linear mixed hybrid quadrilateral shell element
- A geometrically non-linear piezoelectric solid shell element based on a mixed multi-field variational formulation
- A Refined Small Strain and Moderate Rotation Theory of Elastic Anisotropic Shells
- Wavelet transform in the context of quantum mechanics and new orthogonal property of mother wavelets in parameter space
- Finite Elements Based Upon Mindlin Plate Theory With Particular Reference to the Four-Node Bilinear Isoparametric Element
- The application of a finite shell element for composites containing piezo-electric polymers in vibration control
- A simple quadrilateral shell element
- A Linear Theory Of Piezoelastic Shell Vibrations
- Analysis of piezoelastic structures with laminated piezoelectric triangle shell elements
- A hybrid stress ANS solid-shell element and its generalization for smart structure modelling. Part I?solid-shell element formulation
- Classical and advanced multilayered plate elements based upon PVD and RMVT. Part 2: Numerical implementations
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