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Published in: Structural and Multidisciplinary Optimization 1/2016

25-01-2016 | RESEARCH PAPER

Filtering structures out of ground structures – a discrete filtering tool for structural design optimization

Authors: Adeildo S. Ramos Jr., Glaucio H. Paulino

Published in: Structural and Multidisciplinary Optimization | Issue 1/2016

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Abstract

This paper presents an efficient scheme to filter structures out of ground structures, which is implemented using a nested elastic formulation for compliance minimization. The approach uses physical variables and allows control of the minimum ratio between the minimum and maximum areas in the final topology. It leads to a singular problem which is solved using a Tikhonov regularization on the structural problem (rather than on the optimization problem). The filter allows a multiple choice solution in which the user can control the global equilibrium residual in the final structural topology and limit variations of the objective function between consecutive iterations (e.g., compliance). As a result, an unambiguous discrete solution is obtained where all the bars that belong to the topology have well-defined finite areas. This filter feature, with explicit control of member areas, allows the user (e.g., engineer or architect) to play with different alternatives prior to selecting a specific structural configuration. Examples are provided to illustrate the properties of the present approach and the fact that the technique does not always lead to a fully stressed design. The method is efficient in the sense that the finite element solution is computed on the filtered structure (reduced order model) rather than on the full ground structure.

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Appendix
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Literature
go back to reference Achtziger W (1997) Topology optimization of discrete structures: an introduction in view of computational and nonsmooth aspects. In: Rozvany GIN (Ed) Topol. Optim. Struct. Mech. (pp. 57–100). Springer,Wien Achtziger W (1997) Topology optimization of discrete structures: an introduction in view of computational and nonsmooth aspects. In: Rozvany GIN (Ed) Topol. Optim. Struct. Mech. (pp. 57–100). Springer,Wien
go back to reference Bendsoe MP, Sigmund O (2003) Topology optimization: theory, methods, and applications. Springer Verlag Bendsoe MP, Sigmund O (2003) Topology optimization: theory, methods, and applications. Springer Verlag
go back to reference Ben-Israel A, Greville TNE (2003) Generalized inverses - theory and applications, 2nd edn. Springer Verlag, New YorkMATH Ben-Israel A, Greville TNE (2003) Generalized inverses - theory and applications, 2nd edn. Springer Verlag, New YorkMATH
go back to reference Christensen PW, Klarbring A (2009) An introduction to structural optimization. Springer, LinköpingMATH Christensen PW, Klarbring A (2009) An introduction to structural optimization. Springer, LinköpingMATH
go back to reference Engl HW, Hangke M, Neubauer A (1996) Regularization of inverse problems. Kluwer Academic Publishers Engl HW, Hangke M, Neubauer A (1996) Regularization of inverse problems. Kluwer Academic Publishers
go back to reference Farhat C, Géradin M (1998) On the general solution by a direct method of a large-scale singular system of linear equations: application to the analysis of floating structures. Int J Numer Methods Eng 41(4):675–696MathSciNetCrossRefMATH Farhat C, Géradin M (1998) On the general solution by a direct method of a large-scale singular system of linear equations: application to the analysis of floating structures. Int J Numer Methods Eng 41(4):675–696MathSciNetCrossRefMATH
go back to reference Gaynor AT, Meisel NA, Williams CB, Guest JK (2014) Multiple-Material Topology Optimization of Compliant Mechanisms Created Via PolyJet Three-Dimensional Printing. J Manuf Sci Eng 136(6):61015, ASMECrossRef Gaynor AT, Meisel NA, Williams CB, Guest JK (2014) Multiple-Material Topology Optimization of Compliant Mechanisms Created Via PolyJet Three-Dimensional Printing. J Manuf Sci Eng 136(6):61015, ASMECrossRef
go back to reference Ge Q, Qi HJ, Dunn ML (2013) Active materials by four-dimension printing. Appl Phys Lett 103(13):2011–2016CrossRef Ge Q, Qi HJ, Dunn ML (2013) Active materials by four-dimension printing. Appl Phys Lett 103(13):2011–2016CrossRef
go back to reference Groenwold AA, Etman LFP (2008) On the equivalence of optimality criterion and sequential approximate optimization methods in the classical topology layout problem. Int J Numer Methods Eng 73:297–316MathSciNetCrossRefMATH Groenwold AA, Etman LFP (2008) On the equivalence of optimality criterion and sequential approximate optimization methods in the classical topology layout problem. Int J Numer Methods Eng 73:297–316MathSciNetCrossRefMATH
go back to reference Guo X, Cheng GD, Olhoff N (2005) Optimum design of truss topology under buckling constraints. Struct Multidiscip Optim 30:169–180CrossRef Guo X, Cheng GD, Olhoff N (2005) Optimum design of truss topology under buckling constraints. Struct Multidiscip Optim 30:169–180CrossRef
go back to reference Liu K (2014) Segmental multi-point linearization for topology optimization and reliability analysis. MSc Thesis. Univiersity of Illinois at Urbana-Champaign, Urbana Liu K (2014) Segmental multi-point linearization for topology optimization and reliability analysis. MSc Thesis. Univiersity of Illinois at Urbana-Champaign, Urbana
go back to reference Ohsaki M (2011) Optimization of Finite Dimensional Structures (p. 425). CRC Press, Boca RatonMATH Ohsaki M (2011) Optimization of Finite Dimensional Structures (p. 425). CRC Press, Boca RatonMATH
go back to reference Ramos Jr. AS, Paulino GH (2015) Convex topology optimization for hyperelastic trusses based on the ground-structure approach. Struct Multidiscip Optim 51(2):287–304MathSciNetCrossRef Ramos Jr. AS, Paulino GH (2015) Convex topology optimization for hyperelastic trusses based on the ground-structure approach. Struct Multidiscip Optim 51(2):287–304MathSciNetCrossRef
go back to reference Roonau A, Parsons ID (1995) Suppressing Singularities when Computing Critical Points Using Multigrid Methods. Comput Mech 95:1517–1522 Roonau A, Parsons ID (1995) Suppressing Singularities when Computing Critical Points Using Multigrid Methods. Comput Mech 95:1517–1522
go back to reference Rozvany GIN (1996) Difficulties in truss topology optimization with stress, local buckling and system stability constraints. Struct Optim 11:213–237CrossRef Rozvany GIN (1996) Difficulties in truss topology optimization with stress, local buckling and system stability constraints. Struct Optim 11:213–237CrossRef
go back to reference Tikhonov AN, Arsenin VY (1977) Methods for solving Ill-posed problems. Wiley, New YorkMATH Tikhonov AN, Arsenin VY (1977) Methods for solving Ill-posed problems. Wiley, New YorkMATH
go back to reference Wang S, de Sturler E, Paulino G (2007) Large scale topology optimization using preconditioned Krylov subspace methods with recycling. Int J Numer Methods in Eng 69:2441–2468MathSciNetCrossRefMATH Wang S, de Sturler E, Paulino G (2007) Large scale topology optimization using preconditioned Krylov subspace methods with recycling. Int J Numer Methods in Eng 69:2441–2468MathSciNetCrossRefMATH
go back to reference Washizawa T, Asai A, Yoshikawa N (2004) A new approach for solving singular systems in topology optimization using Krylov subspace methods. Struct Multidiscip Optim 28:330–339CrossRef Washizawa T, Asai A, Yoshikawa N (2004) A new approach for solving singular systems in topology optimization using Krylov subspace methods. Struct Multidiscip Optim 28:330–339CrossRef
go back to reference Yanai, H., Takeuchi, K., Takane, Y. (2011) Projection Matrices, Generalized Inverse Matrices, and Singular Value Decomposition. Springer-Verlag, New York Yanai, H., Takeuchi, K., Takane, Y. (2011) Projection Matrices, Generalized Inverse Matrices, and Singular Value Decomposition. Springer-Verlag, New York
go back to reference Zegard T, Paulino GH (2014) GRAND - Ground structure based topology optimization for arbitrary 2D domains using MATLAB. Struct Multidisc Optim 50(5):861–882 Zegard T, Paulino GH (2014) GRAND - Ground structure based topology optimization for arbitrary 2D domains using MATLAB. Struct Multidisc Optim 50(5):861–882
go back to reference Zhou M (1996) Difficulties in truss topology optimization with stress and local buckling constraints. Struct Optim 11:134–136CrossRef Zhou M (1996) Difficulties in truss topology optimization with stress and local buckling constraints. Struct Optim 11:134–136CrossRef
Metadata
Title
Filtering structures out of ground structures – a discrete filtering tool for structural design optimization
Authors
Adeildo S. Ramos Jr.
Glaucio H. Paulino
Publication date
25-01-2016
Publisher
Springer Berlin Heidelberg
Published in
Structural and Multidisciplinary Optimization / Issue 1/2016
Print ISSN: 1615-147X
Electronic ISSN: 1615-1488
DOI
https://doi.org/10.1007/s00158-015-1390-1

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