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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.
"Optimal Design of Complex Mechanical Systems" presents the
foundations and practical application of multi-objective
optimization methods to Vehicle Design Problems with an extensive
overview of examples. The first part provides an introduction and a
general theoretical information about the optimization of complex
mechanical systems and multi-objective optimization methods.
Several presented applications such as the global approximation
approach are brand new in literature and extensively exposed the
first time in this book. The second Part of the book shows some
examples of the application of the proposed methods to the solution
of real vehicle design problems.
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.
"Optimal Design of Complex Mechanical Systems" presents the
foundations and practical application of multi-objective
optimization methods to Vehicle Design Problems with an extensive
overview of examples. The first part provides an introduction and a
general theoretical information about the optimization of complex
mechanical systems and multi-objective optimization methods.
Several presented applications such as the global approximation
approach are brand new in literature and extensively exposed the
first time in this book. The second Part of the book shows some
examples of the application of the proposed methods to the solution
of real vehicle design problems.
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