An isogeometric multimesh design approach for size and shape optimization of multidirectional functionally graded plates
DOI10.1016/j.cma.2018.08.017zbMath1440.74335OpenAlexW2892246233MaRDI QIDQ1986459
Publication date: 8 April 2020
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2018.08.017
NURBSisogeometric analysis (IGA)adaptive hybrid evolutionary firefly algorithm (AHEFA)isogeometric multimesh design (IMD)multidirectional functionally graded (MFG) platessize and shape optimization
Numerical computation using splines (65D07) Plates (74K20) Finite element methods applied to problems in solid mechanics (74S05) Finite element, Rayleigh-Ritz and Galerkin methods for boundary value problems involving PDEs (65N30) Geometrical methods for optimization problems in solid mechanics (74P20)
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Cites Work
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- Isogeometric analysis for parameterized LSM-based structural topology optimization
- Isogeometric design of elastic arches for maximum fundamental frequency
- Topology optimization using B-spline finite elements
- An isogeometrical approach to structural topology optimization by optimality criteria
- Simultaneous shape and topology optimization of shell structures
- Isogeometric shape optimization of shells using semi-analytical sensitivity analysis and sensitivity weighting
- Isogeometric analysis for topology optimization with a phase field model
- Isogeometric topology optimization using trimmed spline surfaces
- Isogeometric sizing and shape optimisation of beam structures
- Isogeometric shape optimization of vibrating membranes
- A large deformation, rotation-free, isogeometric shell
- Optimization of temperature-dependent functionally graded material bodies
- Full analytical sensitivities in NURBS based isogeometric shape optimization
- The bending strip method for isogeometric analysis of Kirchhoff-Love shell structures comprised of multiple patches
- On the variational formulation of stress constraints in isogeometric design
- Isogeometric analysis: CAD, finite elements, NURBS, exact geometry and mesh refinement
- An efficient standard plate theory
- Design of thermoelastic materials using direct sensitivity and optimization methods. Reduction and thermal stresses in functionally gradient materials
- A multicriterial material tailoring of a hollow cylinder in functionally gradient materials: Scheme to global reduction of thermoelastic stresses
- Reduction of thermal stresses by developing two-dimensional functionally graded materials
- Functionally graded materials for prescribed field evolution
- Simultaneous isogeometrical shape and material design of functionally graded structures for optimal eigenfrequencies
- Optimal tailoring of 2D volume-fraction distributions for heat-resisting functionally graded materials using FDM
- Optimal control and optimization of functionally graded materials for thermomechanical processes.
- Optimal shape control of functionally graded smart plates using genetic algorithms
- An improved solution to thermoelastic material design in functionally gradient materials: Scheme to reduce thermal stresses
- Improving differential evolution through a unified approach
- Free vibration analysis of two-dimensional functionally graded cylindrical shells
- A multi-resolution approach for multi-material topology optimization based on isogeometric analysis
- Two-dimensional optimization of material composition of functionally graded materials using meshless analyses and a genetic algorithm
- Static response and free vibration of two-dimensional functionally graded metal/ceramic open cylindrical shells under various boundary conditions
- Nonlinear transient isogeometric analysis of smart piezoelectric functionally graded material plates based on generalized shear deformation theory under thermo-electro-mechanical loads
- Isogeometric design of anisotropic shells: optimal form and material distribution
- Topology optimization in B-spline space
- Thermomechanically coupled sensitivity analysis and design optimization of functionally graded materials
- Generalized shear deformation theory for bending analysis of functionally graded plates
- On calculating with B-splines
- Isogeometric Analysis