The Variational Approach to Fracture

The Variational Approach to Fracture
Title The Variational Approach to Fracture PDF eBook
Author Blaise Bourdin
Publisher Springer Science & Business Media
Pages 173
Release 2008-04-19
Genre Technology & Engineering
ISBN 1402063954

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Presenting original results from both theoretical and numerical viewpoints, this text offers a detailed discussion of the variational approach to brittle fracture. This approach views crack growth as the result of a competition between bulk and surface energy, treating crack evolution from its initiation all the way to the failure of a sample. The authors model crack initiation, crack path, and crack extension for arbitrary geometries and loads.

A Variational Approach to Fracture and Other Inelastic Phenomena

A Variational Approach to Fracture and Other Inelastic Phenomena
Title A Variational Approach to Fracture and Other Inelastic Phenomena PDF eBook
Author Gianpietro Del Piero
Publisher Springer Science & Business Media
Pages 89
Release 2013-08-30
Genre Science
ISBN 9400772262

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This book exposes a number of mathematical models for fracture of growing difficulty. All models are treated in a unified way, based on incremental energy minimization. They differ from each other by the assumptions made on the inelastic part of the total energy, here called the "cohesive energy". Each model describes a specific aspect of material response, and particular care is devoted to underline the correspondence of each model to the experiments. The content of the book is a re-elaboration of the lectures delivered at the First Sperlonga Summer School on Mechanics and Engineering Sciences in September 2011. In the year and a half elapsed after the course, the material has been revised and enriched with new and partially unpublished results. Significant additions have been introduced in the occasion of the course "The variational approach to fracture and other inelastic phenomena", delivered at SISSA, Trieste, in March 2013. The Notes reflect a research line carried on by the writer over the years, addressed to a comprehensive description of the many aspects of the phenomenon of fracture, and to its relations with other phenomena, such as the formation of microstructure and the changes in the material’s strength induced by plasticity and damage. Reprinted from the Journal of Elasticity, volume 112, issue 1, 2013.

Variational Methods in the Mechanics of Solids

Variational Methods in the Mechanics of Solids
Title Variational Methods in the Mechanics of Solids PDF eBook
Author S. Nemat-Nasser
Publisher Elsevier
Pages 429
Release 2017-01-31
Genre Technology & Engineering
ISBN 1483145832

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Variational Methods in the Mechanics of Solids contains the proceedings of the International Union of Theoretical and Applied Mechanics Symposium on Variational Methods in the Mechanics of Solids, held at Northwestern University in Evanston, Illinois, on September 11-13, 1978. The papers focus on advances in the application of variational methods to a variety of mathematically and technically significant problems in solid mechanics. The discussions are organized around three themes: thermomechanical behavior of composites, elastic and inelastic boundary value problems, and elastic and inelastic dynamic problems. This book is comprised of 58 chapters and opens by addressing some questions of asymptotic expansions connected with composite and with perforated materials. The following chapters explore mathematical and computational methods in plasticity; variational irreversible thermodynamics of open physical-chemical continua; macroscopic behavior of elastic material with periodically spaced rigid inclusions; and application of the Lanczos method to structural vibration. Finite deformation of elastic beams and complementary theorems of solid mechanics are also considered, along with numerical contact elastostatics; periodic solutions in plasticity and viscoplasticity; and the convergence of the mixed finite element method in linear elasticity. This monograph will appeal to practitioners of mathematicians as well as theoretical and applied mechanics.

Crystal Plasticity Finite Element Methods

Crystal Plasticity Finite Element Methods
Title Crystal Plasticity Finite Element Methods PDF eBook
Author Franz Roters
Publisher John Wiley & Sons
Pages 188
Release 2011-08-04
Genre Technology & Engineering
ISBN 3527642099

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Written by the leading experts in computational materials science, this handy reference concisely reviews the most important aspects of plasticity modeling: constitutive laws, phase transformations, texture methods, continuum approaches and damage mechanisms. As a result, it provides the knowledge needed to avoid failures in critical systems udner mechanical load. With its various application examples to micro- and macrostructure mechanics, this is an invaluable resource for mechanical engineers as well as for researchers wanting to improve on this method and extend its outreach.

The Thermomechanics of Plasticity and Fracture

The Thermomechanics of Plasticity and Fracture
Title The Thermomechanics of Plasticity and Fracture PDF eBook
Author Gérard A. Maugin
Publisher Cambridge University Press
Pages 376
Release 1992-05-21
Genre Mathematics
ISBN 9780521397803

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This book concentrates upon the mathematical theory of plasticity and fracture as opposed to the physical theory of these fields, presented in the thermomechanical framework.

The Mathematical Theory of Plasticity

The Mathematical Theory of Plasticity
Title The Mathematical Theory of Plasticity PDF eBook
Author Rodney Hill
Publisher Oxford University Press
Pages 370
Release 1998
Genre Mathematics
ISBN 9780198503675

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First published in 1950, this important and classic book presents a mathematical theory of plastic materials, written by one of the leading exponents.

Fracture Mechanics

Fracture Mechanics
Title Fracture Mechanics PDF eBook
Author Huy Duong Bui
Publisher Springer Science & Business Media
Pages 395
Release 2007-01-03
Genre Science
ISBN 1402048378

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This book presents, in a unified manner, a variety of topics in Continuum and Fracture Mechanics: energy methods, conservation laws, mathematical methods to solve two-dimensional and three-dimensional crack problems. Moreover, a series of new subjects is presented in a straightforward manner, accessible to under-graduate students. Emphasizing physical or experimental back-grounds, then analysis and theoretical results, this monograph is intended for use by students and researchers in solid mechanics, mechanical engineering and applied mathematics.