Optimization of Structural Topology, Shape, and Material

Optimization of Structural Topology, Shape, and Material
Title Optimization of Structural Topology, Shape, and Material PDF eBook
Author Martin P. Bendsoe
Publisher Springer Science & Business Media
Total Pages 278
Release 2013-03-14
Genre Technology & Engineering
ISBN 3662031159

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In the past, the possibilities of structural optimization were restricted to an optimal choice of profiles and shape. Further improvement can be obtained by selecting appropriate advanced materials and by optimizing the topology, i.e. finding the best position and arrangement of structural elements within a construction. The optimization of structural topology permits the use of optimization algorithms at a very early stage of the design process. The method presented in this book has been developed by Martin Bendsoe in cooperation with other researchers and can be considered as one of the most effective approaches to the optimization of layout and material design.

Optimization of Structural Topology, Shape, and Material

Optimization of Structural Topology, Shape, and Material
Title Optimization of Structural Topology, Shape, and Material PDF eBook
Author Martin P. Bends?e
Publisher
Total Pages 0
Release 1995
Genre Structural optimization
ISBN 9780387590578

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Optimization of Structural Topology, Shape, and Material

Optimization of Structural Topology, Shape, and Material
Title Optimization of Structural Topology, Shape, and Material PDF eBook
Author Martin P. Bendsøe
Publisher Springer Verlag
Total Pages 271
Release 1995-01-01
Genre Structural optimization.
ISBN 9780387590578

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Topology Optimization

Topology Optimization
Title Topology Optimization PDF eBook
Author Martin Philip Bendsoe
Publisher Springer Science & Business Media
Total Pages 381
Release 2013-04-17
Genre Mathematics
ISBN 3662050862

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The topology optimization method solves the basic enginee- ring problem of distributing a limited amount of material in a design space. The first edition of this book has become the standard text on optimal design which is concerned with the optimization of structural topology, shape and material. This edition, has been substantially revised and updated to reflect progress made in modelling and computational procedures. It also encompasses a comprehensive and unified description of the state-of-the-art of the so-called material distribution method, based on the use of mathematical programming and finite elements. Applications treated include not only structures but also materials and MEMS.

Topology Optimization in Structural Mechanics

Topology Optimization in Structural Mechanics
Title Topology Optimization in Structural Mechanics PDF eBook
Author G.I.N. Rozvany
Publisher Springer
Total Pages 325
Release 2014-05-04
Genre Technology & Engineering
ISBN 3709125669

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Topology optimization is a relatively new and rapidly expanding field of structural mechanics. It deals with some of the most difficult problems of mechanical sciences but it is also of considerable practical interest, because it can achieve much greater savings than mere cross-section or shape optimization.

Topology Design Methods for Structural Optimization

Topology Design Methods for Structural Optimization
Title Topology Design Methods for Structural Optimization PDF eBook
Author Osvaldo M. Querin
Publisher Butterworth-Heinemann
Total Pages 204
Release 2017-06-09
Genre Mathematics
ISBN 0080999891

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Topology Design Methods for Structural Optimization provides engineers with a basic set of design tools for the development of 2D and 3D structures subjected to single and multi-load cases and experiencing linear elastic conditions. Written by an expert team who has collaborated over the past decade to develop the methods presented, the book discusses essential theories with clear guidelines on how to use them. Case studies and worked industry examples are included throughout to illustrate practical applications of topology design tools to achieve innovative structural solutions. The text is intended for professionals who are interested in using the tools provided, but does not require in-depth theoretical knowledge. It is ideal for researchers who want to expand the methods presented to new applications, and includes a companion website with related tools to assist in further study. Provides design tools and methods for innovative structural design, focusing on the essential theory Includes case studies and real-life examples to illustrate practical application, challenges, and solutions Features accompanying software on a companion website to allow users to get up and running fast with the methods introduced Includes input from an expert team who has collaborated over the past decade to develop the methods presented

Topology Optimization in Structural and Continuum Mechanics

Topology Optimization in Structural and Continuum Mechanics
Title Topology Optimization in Structural and Continuum Mechanics PDF eBook
Author George I. N. Rozvany
Publisher Springer Science & Business Media
Total Pages 471
Release 2013-09-20
Genre Science
ISBN 3709116430

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The book covers new developments in structural topology optimization. Basic features and limitations of Michell’s truss theory, its extension to a broader class of support conditions, generalizations of truss topology optimization, and Michell continua are reviewed. For elastic bodies, the layout problems in linear elasticity are discussed and the method of relaxation by homogenization is outlined. The classical problem of free material design is shown to be reducible to a locking material problem, even in the multiload case. For structures subjected to dynamic loads, it is explained how they can be designed so that the structural eigenfrequencies of vibration are as far away as possible from a prescribed external excitation frequency (or a band of excitation frequencies) in order to avoid resonance phenomena with high vibration and noise levels. For diffusive and convective transport processes and multiphysics problems, applications of the density method are discussed. In order to take uncertainty in material parameters, geometry, and operating conditions into account, techniques of reliability-based design optimization are introduced and reviewed for their applicability to topology optimization.