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Topology Optimization in Engineering Structure Design

Topology Optimization in Engineering Structure Design
  • Author : Jihong Zhu
  • Publsiher : Elsevier
  • Release : 08 November 2016
  • ISBN : 0081021194
  • Pages : 294 pages
  • Rating : 4/5 from 21 ratings
GET THIS BOOKTopology Optimization in Engineering Structure Design

Summary:
Topology Optimization in Engineering Structure Design explores the recent advances and applications of topology optimization in engineering structures design, with a particular focus on aircraft and aerospace structural systems. To meet the increasingly complex engineering challenges provided by rapid developments in these industries, structural optimization techniques have developed in conjunction with them over the past two decades. The latest methods and theories to improve mechanical performances and save structural weight under static, dynamic and thermal loads are summarized and explained in detail here, in addition to potential applications of topology optimization techniques such as shape preserving design, smart structure design and additive manufacturing. These new design strategies are illustrated by a host of worked examples, which are inspired by real engineering situations, some of which have been applied to practical structure design with significant effects. Written from a forward-looking applied engineering perspective, the authors not only summarize the latest developments in this field of structure design but also provide both theoretical knowledge and a practical guideline. This book should appeal to graduate students, researchers and engineers, in detailing how to use topology optimization methods to improve product design. Combines practical applications and topology optimization methodologies Provides problems inspired by real engineering difficulties Designed to help researchers in universities acquire more engineering requirements


Topology Optimization in Engineering Structure Design

Topology Optimization in Engineering Structure Design
  • Author : Jihong Zhu,Tong Gao
  • Publisher : Elsevier
  • Release : 08 November 2016
GET THIS BOOKTopology Optimization in Engineering Structure Design

Topology Optimization in Engineering Structure Design explores the recent advances and applications of topology optimization in engineering structures design, with a particular focus on aircraft and aerospace structural systems. To meet the increasingly complex engineering challenges provided by rapid developments in these industries, structural optimization techniques have developed in conjunction with them over the past two decades. The latest methods and theories to improve mechanical performances and save structural weight under static, dynamic and thermal loads are summarized and explained

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Topology Design Methods for Structural Optimization

Topology Design Methods for Structural Optimization
  • Author : Osvaldo M. Querin,Mariano Victoria,Cristina Alonso Gordoa,Rubén Ansola,Pascual Martí
  • Publisher : Butterworth-Heinemann
  • Release : 09 June 2017
GET THIS BOOKTopology Design Methods for Structural Optimization

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

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Multiscale Structural Topology Optimization

Multiscale Structural Topology Optimization
  • Author : Liang Xia
  • Publisher : Elsevier
  • Release : 27 April 2016
GET THIS BOOKMultiscale Structural Topology Optimization

Multiscale Structural Topology Optimization discusses the development of a multiscale design framework for topology optimization of multiscale nonlinear structures. With the intention to alleviate the heavy computational burden of the design framework, the authors present a POD-based adaptive surrogate model for the RVE solutions at the microscopic scale and make a step further towards the design of multiscale elastoviscoplastic structures. Various optimization methods for structural size, shape, and topology designs have been developed and widely employed in engineering applications. Topology

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Topology Optimization in Structural and Continuum Mechanics

Topology Optimization in Structural and Continuum Mechanics
  • Author : George I. N. Rozvany,Tomasz Lewinski
  • Publisher : Springer Science & Business Media
  • Release : 20 September 2013
GET THIS BOOKTopology Optimization in Structural and Continuum Mechanics

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

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Topology Optimization

Topology Optimization
  • Author : Martin Philip Bendsoe,Ole Sigmund
  • Publisher : Springer Science & Business Media
  • Release : 17 April 2013
GET THIS BOOKTopology Optimization

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

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Topology Optimization in Structural Mechanics

Topology Optimization in Structural Mechanics
  • Author : G.I.N. Rozvany
  • Publisher : Springer Science & Business Media
  • Release : 08 July 1997
GET THIS BOOKTopology Optimization in Structural Mechanics

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.

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Evolutionary Structural Optimization

Evolutionary Structural Optimization
  • Author : Y.M. Xie,Grant P. Steven
  • Publisher : Springer
  • Release : 06 December 2012
GET THIS BOOKEvolutionary Structural Optimization

Evolutionary Structural Optimization (ESO) is a design method based on the simple concept of gradually removing inefficient material from a structure as it is being designed. Through this method, the resulting structure will evolve towards its optimum shape. The latest techniques and results of ESO are presented here, illustrated by numerous clear and detailed examples. Sections cover the fundamental aspects of the method, the application to multiple load cases and multiple support environments, frequency optimization, stiffness and displacement constraints, buckling,

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Guide to Structural Optimization

Guide to Structural Optimization
  • Author : Jasbir S. Arora
  • Publisher : Amer Society of Civil Engineers
  • Release : 28 June 1997
GET THIS BOOKGuide to Structural Optimization

Optimization methods are perceived to be at the heart of computer methods for designing engineering systems. With these optimization methods, the designer can evaluate more alternatives, resulting in a better and more cost-effective design. This guide describes the use of modern optimization methods with simple yet meaningful structural design examples. Optimum solutions are obtained and, where possible, compared with the solutions obtained using traditional design procedures.

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Optimal Lightweight Construction Principles

Optimal Lightweight Construction Principles
  • Author : Federico Maria Ballo,Massimiliano Gobbi,Giampiero Mastinu,Giorgio Previati
  • Publisher : Springer Nature
  • Release : 09 November 2020
GET THIS BOOKOptimal Lightweight Construction Principles

This book presents simple design paradigms related to lightweight design, that are derived from an in-depth and theoretically sound analysis based on Pareto theory. It uses numerous examples, including torsion and inflated tubes, to fully explain the theories discussed. Lightweight Construction Principles begins by defining terms in relation to engineering design and optimal design of complex mechanical systems. It then discusses the analytical derivation of the Pareto-optimal set, before applying analytical formulae to optimal design of bent beams. The book

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Optimization of Complex Systems: Theory, Models, Algorithms and Applications

Optimization of Complex Systems: Theory, Models, Algorithms and Applications
  • Author : Hoai An Le Thi,Hoai Minh Le,Tao Pham Dinh
  • Publisher : Springer
  • Release : 15 June 2019
GET THIS BOOKOptimization of Complex Systems: Theory, Models, Algorithms and Applications

This book contains 112 papers selected from about 250 submissions to the 6th World Congress on Global Optimization (WCGO 2019) which takes place on July 8–10, 2019 at University of Lorraine, Metz, France. The book covers both theoretical and algorithmic aspects of Nonconvex Optimization, as well as its applications to modeling and solving decision problems in various domains. It is composed of 10 parts, each of them deals with either the theory and/or methods in a branch of optimization such as Continuous optimization, DC Programming

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An Introduction to Structural Optimization

An Introduction to Structural Optimization
  • Author : Peter W. Christensen,Anders Klarbring
  • Publisher : Springer Science & Business Media
  • Release : 20 October 2008
GET THIS BOOKAn Introduction to Structural Optimization

This book has grown out of lectures and courses given at Linköping University, Sweden, over a period of 15 years. It gives an introductory treatment of problems and methods of structural optimization. The three basic classes of geometrical - timization problems of mechanical structures, i. e. , size, shape and topology op- mization, are treated. The focus is on concrete numerical solution methods for d- crete and (?nite element) discretized linear elastic structures. The style is explicit and practical: mathematical proofs

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EngOpt 2018 Proceedings of the 6th International Conference on Engineering Optimization

EngOpt 2018 Proceedings of the 6th International Conference on Engineering Optimization
  • Author : H.C. Rodrigues,J. Herskovits,C.M. Mota Soares,A.L. Araújo,J.M. Guedes,J.O. Folgado,F. Moleiro,J. F. A. Madeira
  • Publisher : Springer
  • Release : 13 September 2018
GET THIS BOOKEngOpt 2018 Proceedings of the 6th International Conference on Engineering Optimization

The papers in this volume focus on the following topics: design optimization and inverse problems, numerical optimization techniques,efficient analysis and reanalysis techniques, sensitivity analysis and industrial applications. The conference EngOpt brings together engineers, applied mathematicians and computer scientists working on research, development and practical application of optimization methods in all engineering disciplines and applied sciences.

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Evolutionary Topology Optimization of Continuum Structures

Evolutionary Topology Optimization of Continuum Structures
  • Author : Xiaodong Huang,Mike Xie
  • Publisher : John Wiley & Sons
  • Release : 11 March 2010
GET THIS BOOKEvolutionary Topology Optimization of Continuum Structures

Evolutionary Topology Optimization of Continuum Structures treads new ground with a comprehensive study on the techniques and applications of evolutionary structural optimization (ESO) and its later version bi-directional ESO (BESO) methods. Since the ESO method was first introduced by Xie and Steven in 1992 and the publication of their well-known book Evolutionary Structural Optimization in 1997, there have been significant improvements in the techniques as well as important practical applications. The authors present these developments, illustrated by numerous interesting and detailed examples.

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Recent Advances in Optimal Structural Design

Recent Advances in Optimal Structural Design
  • Author : Scott A. Burns
  • Publisher : ASCE Publications
  • Release : 01 January 2002
GET THIS BOOKRecent Advances in Optimal Structural Design

Sponsored by the Technical Committee on Structural Design of the Technical Administrative Committee on Analysis and Computation of the Technical Activities Division of the Structural Engineering Institute of ASCE. This report documents the dramatic new developments in the field of structural optimization over the last two decades. Changes in both computational techniques and applications can be seen by developments in computational methods and solution algorithms, the role of optimization during the various stages of structural design, and the stochastic nature

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Advances on Mechanics, Design Engineering and Manufacturing

Advances on Mechanics, Design Engineering and Manufacturing
  • Author : Benoit Eynard,Vincenzo Nigrelli,Salvatore Massimo Oliveri,Guillermo Peris-Fajarnes,Sergio Rizzuti
  • Publisher : Springer
  • Release : 02 September 2016
GET THIS BOOKAdvances on Mechanics, Design Engineering and Manufacturing

This book gathers papers presented at the International Joint Conference on Mechanics, Design Engineering and Advanced Manufacturing (JCM 2016), held on 14-16 September, 2016, in Catania, Italy. It reports on cutting-edge topics in product design and manufacturing, such as industrial methods for integrated product and process design; innovative design; and computer-aided design. Further topics covered include virtual simulation and reverse engineering; additive manufacturing; product manufacturing; engineering methods in medicine and education; representation techniques; and nautical, aeronautics and aerospace design and modeling. The

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