Bültmann & Gerriets
Nonlinear Solid Mechanics
Theoretical Formulations and Finite Element Solution Methods
von Adnan Ibrahimbegovic
Verlag: Springer
Reihe: Solid Mechanics and Its Applic Nr. 160
Gebundene Ausgabe
ISBN: 9789048123308
Auflage: 2009 edition
Erschienen am 02.06.2009
Sprache: Englisch
Format: 242 mm [H] x 167 mm [B] x 45 mm [T]
Gewicht: 990 Gramm
Umfang: 574 Seiten

Preis: 57,00 €
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Klappentext
Inhaltsverzeichnis

This volume provides insight into modelling and ultimate limit computation of complex structures, with their components represented by solid deformable bodies. The book examines practically all the important questions of current interests for nonlinear solid mechanics: plasticity, damage, large deformations, contact, dynamics, instability, localisation and failure, discrete models, multi-scale, multi-physics and parallel computing, with special attention given to finite element solution methods. The presentation of topics is structured around different aspects of typical boundary value problems in nonlinear solid mechanics, which provides the best pedagogical approach while keeping the book size reasonable despite its very broad contents. Other strong points are the exhaustive treatment of subjects, with each question studied from different angles of mechanics, mathematics and computation, as well as a successful merger of  scientific cultures and heritage from Europe and the USA. The book content and style is also the product of rich international experience in teaching Master and Doctoral level courses, as well as the courses organized for participants from industry (IPSI courses) in France, and similar courses in Germany and Italy. Every effort was made to make the contents accessible to non-specialists and users of computer programs.

The original French edition published by Hermes Science - Lavoisier Paris in 2006 was nominated for the Roberval Award for University Textbooks in French.



Boundary value problem in linear and nonlinear elasticity.- Inelastic behavior at small strains.- Large displacements and deformations.- Changing boundary conditions: contact problems.- Dynamics and time-integration schemes.- Thermodynamics and solution methods for coupled problems.- Geometric and material instabilities.- Multi-scale modelling of inelastic behavior.


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