박사

Integrated Topology Optimization for Construction Equipment Frame : 건설기계 프레임의 통합 위상 최적화

곽성규 2015년
논문상세정보
' Integrated Topology Optimization for Construction Equipment Frame : 건설기계 프레임의 통합 위상 최적화' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • movable load
  • simultaneous optimization
  • stiffness design
  • topology optimization
  • weld manufacturing constraint
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
36 0

0.0%

' Integrated Topology Optimization for Construction Equipment Frame : 건설기계 프레임의 통합 위상 최적화' 의 참고문헌

  • Zhu, J.H., et al., Structural topology optimization with constraints on multi-fastenerjoint loads. Structural and Multidisciplinary Optimization, 2014. 50(4): p. 561-571.
  • Zhu, J.H., W.H. Zhang, and L. Xia, Topology Optimization in Aircraft andAerospace Structures Design. Archives of Computational Methods in Engineering, 2015.
  • Zhou, M., et al. Progress in topology optimization with manufacturing constraints. in Proceedings of the 9th AIAA MDO conference AIAA-2002-4901. 2002. Atalanta,Georgia.
  • Zhou, M. and G.I.N. Rozvany, The COC algorithm, Part II: topological, geometricaland generalized shape optimization. Computer Methods in Applied Mechanics andEngineering, 1991. 89(1): p. 309-336.
  • Zhang, W.H., et al., Structural topology optimization: Extensibility and attainability. Science China Technological Sciences, 2014. 57(7): p. 1310-1321.
  • Yoon, G.H. and Y.Y. Kim, Element connectivity parameterization for topologyoptimization of geometrically nonlinear structures. International Journal of Solids andStructures, 2005. 42(7): p. 1983-2009.
  • Yang, X.Y., Y.M. Xie, and G.P. Steven, Evolutionary methods for topologyoptimisation of continuous structures with design dependent loads. Computers &Structures, 2005. 83(12-13): p. 956-963.
  • Xiao, D., et al., Application of topology optimization to design an electric bicyclemain frame. Structural and Multidisciplinary Optimization, 2012. 46(6): p. 913-929.
  • Volvo Construction Equipment, Wheel Loader Catalog L250G. 2010, Seoul, Korea.
  • Svanberg, K., The method of moving asymptotes?a new method for structuraloptimization. International Journal for Numerical Methods in Engineering, 1987. 24(2): p. 359-373.
  • Stromberg, L.L., et al., Application of layout and topology optimization usingpattern gradation for the conceptual design of buildings. Structural and MultidisciplinaryOptimization, 2010. 43(2): p. 165-180.
  • Sigmund, O., On the design of compliant mechanisms using topology optimization. Journal of Structural Mechanics, 1997. 25(4): p. 493-524.
  • Sigmund, O. and K. Maute, Topology optimization approaches. Structural andMultidisciplinary Optimization, 2013. 48(6): p. 1031-1055.
  • Sigmund, O. and J. Petersson, Numerical instabilities in topology optimization: asurvey on procedures dealing with checkerboards, mesh-dependencies and local minima. Structural Optimization, 1998. 16(1): p. 68-75.
  • Rozvany, G.I.N., Aims, scope, methods, history and unified terminology ofcomputer-aided topology optimization in structural mechanics. Structural andMultidisciplinary Optimization, 2001. 21(2): p. 90-108.
  • Rozvany, G.I.N. and W. Prager, A new class of structural optimization problems:optimal archgrids. Computer Methods in Applied Mechanics and Engineering, 1979. 19(1): p. 127-150.
  • Rozvany, G.I.N. and C.M. Wang, On plane Prager-structures?I. InternationalJournal of Mechanical Sciences, 1983. 25(7): p. 519-527.
  • Rietz, A., Weld optimization with stress constraints and thermal load. Structural andMultidisciplinary Optimization, 2012. 46(5): p. 755-760.
  • Remouchamps, A., et al., Application of a bi-level scheme including topologyoptimization to the design of an aircraft pylon. Structural and MultidisciplinaryOptimization, 2011. 44(6): p. 739-750.
  • Pedersen, N.L., Maximization of eigenvalues using topology optimization. Structural102and Multidisciplinary Optimization, 2000. 20(1): p. 2-11.
  • Leiva, J.P., B.C. Watson, and I. Kosaka. An analytical bi-directional growthparameterization to obtain optimal castable topology designs. in 10th AIAA/ISSMOsymposium on multidisciplinary analysis and optimization. 2004. Albany, NY.
  • Leiva, J.P. A Topology Optimization Method to Extract Optimal Beam-Like, Plate105Like, or Shell-Like Structures from a Solid Finite Element Mesh. in 3rd InternationalConference on Engineering Optimization. 2012. Rio de Janeiro, Brazil.
  • Krog, L. , et al. Topology optimization of aircraft wing box ribs. in 10thAIAA/ISSMO MAO conference. 2004. Albany.
  • Komatsu, Wheel Loader Catalog WA320-5. 2008, Japan.
  • Kim, W., Y.H. Song, and J.E. Kim, Topology optimization of actuator arms in harddisk drives for reducing bending resonance-induced off-tracks. Structural andMultidisciplinary Optimization, 2012. 46(6): p. 907-912.
  • Kim, T.S. and Y.Y. Kim, Multiobjective topology optimization of a beam undertorsion and distortion. AIAA journal, 2002. 40(2): p. 376-381.
  • Kim, S.I. and Y.Y. Kim, Topology optimization of planar linkage mechanisms. International Journal for Numerical Methods in Engineering, 2014. 98(4): p. 265-286.
  • Jang, G.W., M.S. Yoon, and J.H. Park, Lightweight flatbed trailer design by usingtopology and thickness optimization. Structural and Multidisciplinary Optimization, 2010. 41(2): p. 295-307.
  • Jang, G.W., H.S. Shim, and Y.Y. Kim, Optimization of support locations of beamand plate structures under self -weight by using a sprung structure model. Journal ofMechanical Design, 2009. 131(2): p. 021005.
  • Harzheim, L. and G. Graf, Topshape: an attempt to create design proposalsincluding manufacturing constraints. International Journal of Vehicle Design, 2002. 28(4): p. 389-409.
  • Guest, J.K., J.H. Prevost, and T. Belytschko, Achieving minimum length scale intopology optimization using nodal design variables and projection functions. International Journal for Numerical Methods in Engineering, 2004. 61(2): p. 238-254.
  • Fuchs, M.B. and E. Moses, Optimal structural topologies with transmissible loads. Structural and Multidisciplinary Optimization, 2000. 19(4): p. 263-273.
  • Forcier, L.C. and S. Joncas, Development of a structural optimization strategy for thedesign of next generation large thermoplastic wind turbine blades. Structural andMultidisciplinary Optimization, 2012. 45(6): p. 889-906.
  • Du, J. and N. Olhoff, Topological design of freely vibrating continuum structures formaximum values of simple and multiple eigenfrequencies and frequency gaps. Structuraland Multidisciplinary Optimization, 2007. 34(2): p. 91-110.
  • Deaton, J.D. and R.V. Grandhi, A survey of structural and multidisciplinarycontinuum topology optimization: post 2000. Structural and MultidisciplinaryOptimization, 2013. 49(1): p. 1-38.
  • Dassault Systemes Simulia. ABAQUS 6.12 Documentation, Providence, RhodeIsland, USA, 2012.
  • Choi, K.K. and N.H. Kim, Structural sensitivity analysis and optimization: linearsystems. Vol. 1. 2004: Springer, New York.
  • Chiandussi, G., M. Codegone, and S. Ferrero, Topology optimization with optimalitycriteria and transmissible loads. Computers & Mathematics with Applications, 2009. 57(5): p. 772-788.
  • Cavazzuti, M., et al., High performance automotive chassis design: a topologyoptimization based approach. Structural and Multidisciplinary Optimization, 2011. 44(1):p. 45-56.
  • Buhl, T., Simultaneous topology optimization of structure and supports. Structuraland Multidisciplinary Optimization, 2002. 23(5): p. 336-346.
  • Bruns, T. and D.A. Tortorelli, Topology optimization of non-linear elastic structuresand compliant mechanisms. Computer Methods in Applied Mechanics and Engineering,2001. 190(26): p. 3443-3459.
  • Bends e, M.P., Optimal shape design as a material distribution problem. StructuralOptimization, 1989. 1(4): p. 193-202.
  • Bends e, M.P. and O. Sigmund, Topology optimization: theory, methods andapplications. 2003: Springer, Berlin.
  • Bends e, M.P. and N. Kikuchi, Generating optimal topologies in structural designusing a homogenization method. Computer Methods in Applied Mechanics andEngineering, 1988. 71(2): p. 197-224.
  • Altair OptiStruct, Optistruct 11 User ’s manual. Altair Engineering Inc., Troy, MI,www.altair.com