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Limit States of Materials and Structures: Direct Methods

Editat de Dieter Weichert, Alan Ponter
en Limba Engleză Hardback – 12 iun 2009
To predict loading limits for structures and structural elements is one of the oldest and most important tasks of engineers. Among the theoretical and numericalmethodsavailableforthispurpose,so-called“DirectMethods”,- bracing Limit- and Shakedown Analysis, play an eminent role due to the fact that they allow rapid access to the requested information in mathematically constructive manners. The collection of papers in this book is the outcome of a workshop held at Aachen University of Technology in November 2007. The individual c- tributions stem in particular from the areas of new numerical developments renderingthemethodsmoreattractive forindustrialdesign,extensionsofthe general methodology to new horizons of application, probabilistic approaches and concrete technological applications. The papers are arranged according to the order of the presentations in the workshop and give an excellent insight into state-of-the-art developments in this broad and growing ?eld of research. The editors warmly thank all the scientists, who have contributed by their outstanding papers to the quality of this edition. Special thanks go to Jaan Simon for his great help in putting together the manuscript to its ?nal shape.
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Specificații

ISBN-13: 9781402096334
ISBN-10: 140209633X
Pagini: 320
Ilustrații: XII, 305 p.
Dimensiuni: 155 x 235 x 24 mm
Greutate: 0.61 kg
Ediția:2009
Editura: SPRINGER NETHERLANDS
Colecția Springer
Locul publicării:Dordrecht, Netherlands

Public țintă

Research

Descriere

To predict loading limits for structures and structural elements is one of the oldest and most important tasks of engineers. Among the theoretical and numericalmethodsavailableforthispurpose,so-called“DirectMethods”,- bracing Limit- and Shakedown Analysis, play an eminent role due to the fact that they allow rapid access to the requested information in mathematically constructive manners. The collection of papers in this book is the outcome of a workshop held at Aachen University of Technology in November 2007. The individual c- tributions stem in particular from the areas of new numerical developments renderingthemethodsmoreattractive forindustrialdesign,extensionsofthe general methodology to new horizons of application, probabilistic approaches and concrete technological applications. The papers are arranged according to the order of the presentations in the workshop and give an excellent insight into state-of-the-art developments in this broad and growing ?eld of research. The editors warmly thank all the scientists, who have contributed by their outstanding papers to the quality of this edition. Special thanks go to Jaan Simon for his great help in putting together the manuscript to its ?nal shape.

Cuprins

Large problems in numerical Limit Analysis: a decomposition approach, by F. Pastor, Z. Kammoun, E. Loute, J. Pastor and H. Smaoui; Gurson model for porous pressure sensitive materials, by J. Pastor and P. Thore; A Direct Method for the determination of effective strength domains for periodic elastic-plastic media, by S. Bourgeois, H. Magoariec and O. Debordes; Stochastic limit load analysis of elasto-plastic plane frames, by K. Marti; Limit load analysis of plane frames under stochastic uncertainty , by S. Zier and K. Marti; Static shakedown theorem for solids with temperature-dependent elastic modulus, by A. Oueslati and G. de Saxce; On shakedown of structures under variable loads with a kinematic non-linear and non-associated hardening rule, by C. Bouby, G. de Saxce and J.-B. Tritsch; Limit Analysis of orthotropic Laminates by Linear Matching Method, by P. Fuschi, A. A. Pisano, and O. Barrera

Textul de pe ultima copertă

To determine most exactly the carrying capacity of a structure or a structural element has always been a major concern to any design engineer. For safety sensitive structures this implies not only situations of normal service conditions but also states near to failure or post-critical states in order to better prevent accidents by appropriate design. Among the rational design tools available to engineers, for this purpose the so-called "direct methods", embracing in particular limit- and shakedown analysis, have always been particularly attractive due to the fact that they allow to determine in a constructive way directly the limit loads of a structure. This holds true for simple loading by proportionally applied mechanical and thermal loads, but also for the more complicated situation of variable loading even in the case when the loading history is not deterministically given.
The tremendous progress in computation over the last years has contributed very largely to the development of direct methods. They have left the realm of ad-hoc computing and can be used today for post-processing in combination with commercial design tools.
Far from being comprehensive, given this very active field of scientific research and development, the papers presented in this book give an account of some of the most advanced results achieved over the last years by leading scientists in the field. This way, the book is meant to help the practical engineer to choose the right tool for his safety analysis of critical structures and to stimulate researchers to enter this most interesting field, reaching from highly abstract concepts up to the essential questions of practical engineering.

Caracteristici

Advanced Safety Design for mechanical and civil engineering
Recent progress in research on Direct Methods
New theoretical achievements and examples from practice