Integrated design of cellular composites using a level-set topology optimization method
DOI10.1016/j.cma.2016.06.012zbMath1439.74286OpenAlexW2469519677MaRDI QIDQ2308637
Liang Gao, Zhen Luo, Terry Brown, Nong Zhang, Hao Li
Publication date: 3 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.2016.06.012
level set methodfunctionally graded materialstopology optimizationintegrated designcellular composites
Composite and mixture properties (74E30) Topological methods for optimization problems in solid mechanics (74P15) Numerical and other methods in solid mechanics (74S99)
Related Items (21)
Cites Work
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- Multi-objective concurrent topology optimization of thermoelastic structures composed of homogeneous porous material
- Explicit feature control in structural topology optimization via level set method
- A topology optimization method based on the level set method incorporating a fictitious interface energy
- A meshfree level-set method for topological shape optimization of compliant multiphysics actuators
- Generating optimal topologies in structural design using a homogenization method
- Materials with prescribed constitutive parameters: An inverse homogenization problem
- Structural optimization using sensitivity analysis and a level-set method.
- Material interpolation schemes in topology optimization
- A new class of extremal composites
- Structural boundary design via level set and immersed interface methods
- A level set method for topological shape optimization of 3D structures with extrusion constraints
- Multi-scale robust design and optimization considering load uncertainties
- A multi-material level set-based topology and shape optimization method
- Multiscale structural topology optimization with an approximate constitutive model for local material microstructure
- A level set method for structural topology optimization.
- Fracture analysis of cellular materials: a strain gradient model.
- Mechanics of cellular and other low-density materials
- Design of functionally graded piezocomposites using topology optimization and homogenization -- toward effective energy harvesting materials
- Optimizing multifunctional materials: design of microstructures for maximized stiffness and fluid permeability
- Design of maximum permeability material structures
- Shape and topology optimization of compliant mechanisms using a parameterization level set method
- Composite material design of two-dimensional structures using the homogenization design method
- A new hole insertion method for level set based structural topology optimization
- Computational Aspects of Radial Basis Function Approximation
- A level set-based parameterization method for structural shape and topology optimization
- Free Material Optimization with Fundamental Eigenfrequency Constraints
- Scale‐related topology optimization of cellular materials and structures
- Free material optimization: recent progress†
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