A simple and effective inverse projection scheme for void distribution control in topology optimization
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Publication:381323
DOI10.1007/s00158-008-0332-6zbMath1274.74304OpenAlexW2169359841MaRDI QIDQ381323
Emílio Carlos Nelli Silva, S. R. M. Almeida, Glaucio H. Paulino
Publication date: 15 November 2013
Published in: Structural and Multidisciplinary Optimization (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00158-008-0332-6
topology optimizationprojection functionscombined projectiondirect projectioninverse projectiontwo-phase optimization
Related Items (9)
Design of laminated piezocomposite shell transducers with arbitrary fiber orientation using topology optimization approach ⋮ A computational paradigm for multiresolution topology optimization (MTOP) ⋮ Layout and material gradation in topology optimization of functionally graded structures: a global-local approach ⋮ Efficient generation of large-scale Pareto-optimal topologies ⋮ Derivable skeletons in topology optimization for length scale control ⋮ Topology optimization with multiple phase projection ⋮ Imposing minimum and maximum member size, minimum cavity size, and minimum separation distance between solid members in topology optimization ⋮ Arbitrary void feature control in level set topology optimization ⋮ Topology optimization considering multi-axis machining constraints using projection methods
Cites Work
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- Continuous approximation of material distribution for topology optimization
- Multi-actuated functionally graded piezoelectric micro-tools design: A multiphysics topology optimization approach
- A new density‐stiffness interpolation scheme for topology optimization of continuum structures
- Achieving minimum length scale in topology optimization using nodal design variables and projection functions
- Bilateral filtering for structural topology optimization
- Integration of design and manufacturing for structural shape optimization
- Topology optimization using regularized intermediate density control
- Design of multiphysics actuators using topology optimization. I: One-material structures. II: Two-material structures.
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