<p>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 o
Topology Optimization in Structural and Continuum Mechanics
β Scribed by George I. N. Rozvany (auth.), George I. N. Rozvany, Tomasz LewiΕski (eds.)
- Publisher
- Springer-Verlag Wien
- Year
- 2014
- Tongue
- English
- Leaves
- 471
- Series
- CISM International Centre for Mechanical Sciences 549
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
The book covers new developments in structural topology optimization. Basic features and limitations of Michellβs 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.
β¦ Table of Contents
Front Matter....Pages i-x
Structural Topology Optimization (STO) β Exact Analytical Solutions: Part I....Pages 1-14
Structural Topology Optimization (STO) β Exact Analytical Solutions: Part II....Pages 15-34
Some Fundamental Properties of Exact Optimal Structural Topologies....Pages 35-52
Validation of Numerical Methods by Analytical Benchmarks, and Verification of Exact Solutions by Numerical Methods....Pages 53-69
A Brief Review of Numerical Methods of Structural Topology Optimization....Pages 71-86
On Basic Properties of Michellβs Structures....Pages 87-128
Structural Shape and Topology Optimization....Pages 129-173
Compliance Minimization of Two-Material Elastic Structures....Pages 175-212
The Free Material Design in Linear Elasticity....Pages 213-257
Introductory Notes on Topological Design Optimization of Vibrating Continuum Structures....Pages 259-273
Structural Topology Optimization with Respect to Eigenfrequencies of Vibration....Pages 275-297
On Optimum Design and Periodicity of Band-gap Structures....Pages 299-324
Topological Design for Minimum Dynamic Compliance of Structures under Forced Vibration....Pages 325-339
Topological Design for Minimum Sound Emission from Structures under Forced Vibration....Pages 341-357
Discrete Material Optimization of Vibrating Laminated Composite Plates for Minimum Sound Emission....Pages 359-387
Topology Optimization of Diffusive Transport Problems....Pages 389-407
Topology Optimization of Flows: Stokes and Navier-Stokes Models....Pages 409-419
Topology Optimization of Coupled Multi-Physics Problems....Pages 421-437
The Extended Finite Element Method....Pages 439-456
Topology Optimization under Uncertainty....Pages 457-471
β¦ Subjects
Structural Mechanics; Engineering Design; Optimization; Theoretical and Applied Mechanics
π SIMILAR VOLUMES
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