Buch, Englisch, 392 Seiten, Format (B × H): 160 mm x 240 mm, Gewicht: 662 g
Reihe: NATO Science Series II: Mathematics, Physics and Chemistry
Buch, Englisch, 392 Seiten, Format (B × H): 160 mm x 240 mm, Gewicht: 662 g
Reihe: NATO Science Series II: Mathematics, Physics and Chemistry
ISBN: 978-0-7923-6807-6
Verlag: Springer Netherlands
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
- Technische Wissenschaften Maschinenbau | Werkstoffkunde Maschinenbau
- Mathematik | Informatik EDV | Informatik Angewandte Informatik Computeranwendungen in Wissenschaft & Technologie
- Technische Wissenschaften Technik Allgemein Computeranwendungen in der Technik
- Technische Wissenschaften Bauingenieurwesen Konstruktiver Ingenieurbau, Baustatik
- Technische Wissenschaften Technik Allgemein Mathematik für Ingenieure
- Naturwissenschaften Physik Mechanik Klassische Mechanik, Newtonsche Mechanik
- Mathematik | Informatik EDV | Informatik Professionelle Anwendung Computer-Aided Design (CAD)
- Technische Wissenschaften Bauingenieurwesen Bauingenieurwesen
- Geisteswissenschaften Design Produktdesign, Industriedesign
- Technische Wissenschaften Technik Allgemein Konstruktionslehre und -technik
Weitere Infos & Material
I — Basic aspects of topology optimization.- Some recent results on topology optimization of periodic composites.- Problem classes, solution strategies and unified terminology of FE-based topology optimization.- Comparative study of optimizing the topology of plate-like structures via plate theory and 3-D theory of elasticity.- A formulation for optimal structural design with optimal materials.- On the influence of geometrical non-linearities in topology optimization.- II — Special techniques and problem classes in topology optimization.- Structural reanalysis for topological modifications — a unified approach.- Topological derivative and its application in optimal design of truss and beam structures for displacement, stress and buckling constraints.- Transmissible loads in the design of optimal structural topologies.- New formulation for truss topology optimization problems under buckling constraints.- III — Treatment of computational difficulties in topology optimization.- On singular topologies and related optimization algorithm.- An efficient approach for checkerboard and minimum member size control and its implementation in a commercial software.- Some intrinsic difficulties with relaxation and penalization methods in topology optimization.- Topology optimization subject to design-dependent validity of constraints.- IV — Emerging methods in topology optimization.- Evolutionary computing and structural topology optimization — a state of the art assessment.- Stress ratio type methods and conditional constraints — a critical review.- Advances in evolutionary structural optimization: 1992-2000.- V — Mathematical aspects of topology optimization.- Shape optimization with general objective functions using partial relaxation.- Equally stressed structures:two-dimensional perspective.- VI — Practical applications of topology optimization.- Practical aspects of commercial composite topology optimization software development.- Topology optimisation of the porous coating distribution in non-cemented hip prostheses.- A formulation in design for optimal energy absorption.- VII — Miscellaneous topics.- Optimal design with non-linear elastic materials.- Damage tolerant topology optimization under multiple damage configurations.- On topology aspects of optimal bi-material physically non-linear structures.- Brief contributions (Extended abstracts).- Model of functional adaptation of bone and design of composite structural elements.- On optimal design problems for unilaterally supported plates subjected to buckling.- Shape truss optimization in Java multithreaded genetic program.- Optimal design of material and topology based on an energy model.- Modelling and optimization of porous materials deformation process.- Topology optimization of plastic disks.- Optimality conditions in nonconservative stability problems.- About nonunique solutions in topology optimization.- Optimization of non-elastic plates and shells.- Optimisation of rigid-plastic and elastic-plastic beams under dynamic loading.- Percolation model of material viscous failure under pressure.- Topology design of the joint types and boundary conditions of the discretized structures by mathematical programming.