IUTAM Symposium on New Applications of Nonlinear and Chaotic Dynamics in Mechanics

IUTAM Symposium on New Applications of Nonlinear and Chaotic Dynamics in Mechanics
Title IUTAM Symposium on New Applications of Nonlinear and Chaotic Dynamics in Mechanics PDF eBook
Author Francis C. Moon
Publisher Springer Science & Business Media
Pages 559
Release 2012-12-06
Genre Technology & Engineering
ISBN 9401153205

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This book presents the latest research results in the area of applied nonlinear dynamics and chaos theory. Papers by three academic generations address new applications of nonlinear dynamics to mechanics, including fluid-structure interaction, machining and mechanics of solids, and many other applications.

IUTAM Symposium on Chaotic Dynamics and Control of Systems and Processes in Mechanics

IUTAM Symposium on Chaotic Dynamics and Control of Systems and Processes in Mechanics
Title IUTAM Symposium on Chaotic Dynamics and Control of Systems and Processes in Mechanics PDF eBook
Author Giuseppe Rega
Publisher Springer Science & Business Media
Pages 518
Release 2006-06-22
Genre Technology & Engineering
ISBN 1402032684

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The interest of the applied mechanics community in chaotic dynamics of engineering systems has exploded in the last fifteen years, although research activity on nonlinear dynamical problems in mechanics started well before the end of the Eighties. It developed first within the general context of the classical theory of nonlinear oscillations, or nonlinear vibrations, and of the relevant engineering applications. This was an extremely fertile field in terms of formulation of mechanical and mathematical models, of development of powerful analytical techniques, and of understanding of a number of basic nonlinear phenomena. At about the same time, meaningful theoretical results highlighting new solution methods and new or complex phenomena in the dynamics of deterministic systems were obtained within dynamical systems theory by means of sophisticated geometrical and computational techniques. In recent years, careful experimental studies have been made to establish the actual occurrence and observability of the predicted dynamic phenomena, as it is vitally needed in all engineering fields. Complex dynamics have been shown to characterize the behaviour of a great number of nonlinear mechanical systems, ranging from aerospace engineering applications to naval applications, mechanical engineering, structural engineering, robotics and biomechanics, and other areas. The International Union of Theoretical and Applied Mechanics grasped the importance of such complex phenomena in the Eighties, when the first IUTAM Symposium devoted to the general topic of nonlinear and chaotic dynamics in applied mechanics and engineering was held in Stuttgart (1989).

IUTAM Symposium on Asymptotics, Singularities and Homogenisation in Problems of Mechanics

IUTAM Symposium on Asymptotics, Singularities and Homogenisation in Problems of Mechanics
Title IUTAM Symposium on Asymptotics, Singularities and Homogenisation in Problems of Mechanics PDF eBook
Author A.B. Movchan
Publisher Springer
Pages 609
Release 2006-05-09
Genre Science
ISBN 1402026048

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Proceedings of the IUTAM Symposium held in Liverpool, UK, 8-11 July 2002

IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids

IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids
Title IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids PDF eBook
Author Qing-Ping Sun
Publisher Springer Science & Business Media
Pages 278
Release 2013-03-14
Genre Technology & Engineering
ISBN 9401700699

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Phase transition phenomena in solids are of vital interest to physicists, materials scientists, and engineers who need to understand and model the mechanical behavior of solids during various kinds of phase transformations. This volume is a collection of 29 written contributions by distinguished invited speakers from 14 countries to the IUTAM Symposium on Mechanics of Martensitic Phase Transformation in Solids, the first IUTAM Symposium focusing on this topic. It contains basic theoretical and experimental aspects of the recent advances in the mechanics research of martensitic phase transformations. The main topics include microstructure and interfaces, material instability and its propagation, micromechanics approaches, interaction between plasticity and phase transformation, phase transformation in thin films, single and polycrystalline shape memory alloys, shape memory polymers, TRIP steels, etc. Due to the multidisciplinary nature of the research covered, this volume will be of interest to researchers, graduate students and engineers in the field of theoretical and applied mechanics as well as materials science and technology.

IUTAM Symposium on Mechanical Waves for Composite Structures Characterization

IUTAM Symposium on Mechanical Waves for Composite Structures Characterization
Title IUTAM Symposium on Mechanical Waves for Composite Structures Characterization PDF eBook
Author Dimitrios A. Sotiropoulos
Publisher Springer Science & Business Media
Pages 194
Release 2005-12-09
Genre Science
ISBN 030646957X

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This book is a collection of selected reviewed papers that were presented at the International Union of Theoretical and Applied Mechanics Symposium "Mechanical waves for composite structures characterization". The Symposium took place June 14-17, 2000 in Chania, Crete, Greece. As is customary, IUTAM Symposia Proceedings are published in the series "Solid Mechanics and Its Applications" by Kluwer Academic Publishers. I am indebted to Professor G. M. L. Gladwell who is the series editor. I would also like to take this opportunity to express my sincere gratitude to Professor M. A. Hayes the Secretary General of the International Union of Theoretical and Applied Mechanics and a member ofthe Symposium's Scientific Committee. His constant encouragement and support made the Symposium not only possible but also successful. To the success also contributed all the members of the Symposium's Scientific Committee which I had the honor to chair. I express my appreciation to each one of them who are: Professor J. D. Achenbach (Northwestern University, Evanston, Illinois, USA), Professor M. A. Hayes (University College, Dublin, Ireland), Professor K. J. Langenberg (University of Kassel, Germany), Professor A. K. Mal (University of California, Los Angeles, USA), Professor X. Markenscoff (University of California, San Diego, USA), Professor S. Nair (Illinois Institute of Technology, Chicago, USA), Professor R. W. Ogden (University of Glasgow, UK), Professor G.

IUTAM Symposium on Mechanical and Electromagnetic Waves in Structured Media

IUTAM Symposium on Mechanical and Electromagnetic Waves in Structured Media
Title IUTAM Symposium on Mechanical and Electromagnetic Waves in Structured Media PDF eBook
Author Ross C. McPhedran
Publisher Springer Science & Business Media
Pages 335
Release 2006-05-02
Genre Science
ISBN 0306469553

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The IUTAM Symposium on Mechanical and Electromagnetic Waves in Structured Media took place at the University of Sydney from January 18- 22, 1999. It brought together leading researchers from eleven countries for a week-long meeting, with the aim of providing cross-links between the com- nities studying related problems involving elastic and electromagnetic waves in structured materials. After the meeting, participants were invited to submit articles based on their presentations, which were refereed and assembled to constitute these Proceedings. The topics covered here represent areas at the forefront of research intoelastic and electromagnetic waves. They include effect of nonlinearity, diffusion and multiple scattering on waves, as well as asymptotic and numerical techniques. Composite materials are discussed in depth, with example systems ranging fromdusty plasmas to a magneto-elastic microstructured system. Also included are studies of homogenisation, that field which seeks to determine equivalent homogeneous systems which can give equivalent wave properties to structured materials, and inverse problems, in which waves are used as a probe to infer structural details concerning scattering systems. There are also strong groups of papers on the localization of waves by random systems, and photonic and phononic band gap materials. These are being developed by analogue with semiconductors for electrons, and hold out the promise of enabling designers to control the propagation of waves through materials in novel ways. We would like to thank the other members of the Scientific Committee (A.

IUTAM Symposium on Theoretical and Numerical Methods in Continuum Mechanics of Porous Materials

IUTAM Symposium on Theoretical and Numerical Methods in Continuum Mechanics of Porous Materials
Title IUTAM Symposium on Theoretical and Numerical Methods in Continuum Mechanics of Porous Materials PDF eBook
Author Wolfgang Ehlers
Publisher Springer Science & Business Media
Pages 428
Release 2006-04-11
Genre Science
ISBN 0306469537

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During the last decades, continuum mechanics of porous materials has achieved great attention, since it allows for the consideration of the volumetrically coupled behaviour of the solid matrix deformation and the pore-fluid flow. Naturally, applications of porous media models range from civil and environmental engineering, where, e. g. , geote- nical problems like the consolidation problem are of great interest, via mechanical engineering, where, e. g. , the description of sinter materials or polymeric and metallic foams is a typical problem, to chemical and biomechanical engineering, where, e. g. , the complex structure of l- ing tissues is studied. Although these applications are principally very different, they basically fall into the category of multiphase materials, which can be described, on the macroscale, within the framework of the well-founded Theory of Porous Media (TPM). With the increasing power of computer hardware together with the rapidly decreasing computational costs, numerical solutions of complex coupled problems became possible and have been seriously investigated. However, since the quality of the numerical solutions strongly depends on the quality of the underlying physical model together with the experimental and mathematical possibilities to successfully determine realistic material parameters, a successful treatment of porous materials requires a joint consideration of continuum mechanics, experimental mechanics and numerical methods. In addition, micromechanical - vestigations and homogenization techniques are very helpful to increase the phenomenological understanding of such media.