Free vibration analysis of laminated doubly-curved shells with arbitrary material orientation distribution employing higher order theories and differential quadrature method
DOI10.1016/j.enganabound.2023.04.008zbMATH Open1539.74204MaRDI QIDQ6539075
Rossana Dimitri, Francesco Tornabene, Matteo Viscoti
Publication date: 14 May 2024
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
free vibration analysisanisotropic materialsgeneralized differential quadraturedoubly-curved shellsmaterial orientation angle
Vibrations in dynamical problems in solid mechanics (74H45) Plates (74K20) Numerical quadrature and cubature formulas (65D32)
Cites Work
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- Isogeometric large deformation frictionless contact using T-splines
- Free vibration analysis of functionally graded conical, cylindrical shell and annular plate structures with a four-parameter power-law distribution
- Isogeometric analysis of structural vibrations
- Relationships between bending solutions of classical and shear deformation beam theories
- Free vibration analysis of curvilinear quadrilateral plates by the differential quadrature method
- Free vibrations of three parameter functionally graded parabolic panels of revolution
- Free vibration analysis of discrete-continuous functionally graded circular plate via the Neumann series method
- Free vibration analysis of laminated composite hybrid and GFRP shells based on higher order zigzag theory with experimental validation
- Generalized higher order layerwise theory for the dynamic study of anisotropic doubly-curved shells with a mapped geometry
- Isogeometric analysis: an overview and computer implementation aspects
- NURBS- and T-spline-based isogeometric cohesive zone modeling of interface debonding
- Numerical study of grid distribution effect on accuracy of DQ analysis of beams and plates by error estimation of derivative approximation
- Geometry and Topology for Mesh Generation
- A Simple Higher-Order Theory for Laminated Composite Plates
- Laminated Composite Plate Theory With Improved In-Plane Responses
- A generalization of two-dimensional theories of laminated composite plates
- Application of generalized differential quadrature to solve two-dimensional incompressible Navier-Stokes equations
- General buckling of stiffened circular cylindrical shells according to a layerwise theory
- Generalized differential and integral quadrature and their application to solve boundary layer equations
- The structure of weighting coefficient matrices of harmonic differential quadrature and its applications
- ON OPTIMAL SELECTION OF INTERIOR POINTS FOR APPLYING DISCRETIZED BOUNDARY CONDITIONS IN DQ VIBRATION ANALYSIS OF BEAMS AND PLATES
- Stiffness design of laminates using the polar method
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