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Optimal Lightweight Construction Pri...
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Gobbi, Massimiliano.
Optimal Lightweight Construction Principles
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Optimal Lightweight Construction Principles/ by Federico Maria Ballo, Massimiliano Gobbi, Giampiero Mastinu, Giorgio Previati.
作者:
Ballo, Federico Maria.
其他作者:
Previati, Giorgio.
面頁冊數:
XVII, 283 p. 157 illus., 44 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Optimization. -
電子資源:
https://doi.org/10.1007/978-3-030-60835-4
ISBN:
9783030608354
Optimal Lightweight Construction Principles
Ballo, Federico Maria.
Optimal Lightweight Construction Principles
[electronic resource] /by Federico Maria Ballo, Massimiliano Gobbi, Giampiero Mastinu, Giorgio Previati. - 1st ed. 2021. - XVII, 283 p. 157 illus., 44 illus. in color.online resource.
Engineering Design and Optimal Design of Complex Mechanical Systems: Definitions -- On the Analytical Derivation of the Pareto-Optimal Set with Application to Structural Design -- Bending Beams of Arbitrary Cross Sections – Optimal Design by Analytical Formulae -- Bending of Lightweight Circular Tubes -- Optimal Design of a Beam Subject to Bending: a Basic Application -- Multi-objective Analytical Optimisation of Highly Inflated Tubes Under Bending -- Thin-Walled Tubes Under Torsion: Multi-Objective Optimal Design -- An Application of Multi-Objective Stochastic Optimisation to Structural Design -- An Application of Analytical Multi-Objective Optimisation to Truss Structures -- Topology Optimisation of Continuum Structures: A Basic Introduction -- Concerned Topological Optimisation of Two Bodies Sharing Design Space -- Structural Optimisation in Road Vehicles Design.
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 moves through numerous case studies of different beam and tube construction including beams subject to bending, thin walled tubes under torsion and truss structures. This book will be of interest to researchers and graduate students in the field of structural optimisation and multi-objective optimization, as well as to practitioners such as design engineers.
ISBN: 9783030608354
Standard No.: 10.1007/978-3-030-60835-4doiSubjects--Topical Terms:
669174
Optimization.
LC Class. No.: TA174
Dewey Class. No.: 620.0042
Optimal Lightweight Construction Principles
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Engineering Design and Optimal Design of Complex Mechanical Systems: Definitions -- On the Analytical Derivation of the Pareto-Optimal Set with Application to Structural Design -- Bending Beams of Arbitrary Cross Sections – Optimal Design by Analytical Formulae -- Bending of Lightweight Circular Tubes -- Optimal Design of a Beam Subject to Bending: a Basic Application -- Multi-objective Analytical Optimisation of Highly Inflated Tubes Under Bending -- Thin-Walled Tubes Under Torsion: Multi-Objective Optimal Design -- An Application of Multi-Objective Stochastic Optimisation to Structural Design -- An Application of Analytical Multi-Objective Optimisation to Truss Structures -- Topology Optimisation of Continuum Structures: A Basic Introduction -- Concerned Topological Optimisation of Two Bodies Sharing Design Space -- Structural Optimisation in Road Vehicles Design.
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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 moves through numerous case studies of different beam and tube construction including beams subject to bending, thin walled tubes under torsion and truss structures. This book will be of interest to researchers and graduate students in the field of structural optimisation and multi-objective optimization, as well as to practitioners such as design engineers.
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