Numerical Methods In Fracture Mechanics

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Numerical Methods in Fracture Mechanics

Author : D. R. J. Owen,Anthony Roger Luxmoore
Publisher : Unknown
Page : 840 pages
File Size : 54,9 Mb
Release : 1980
Category : Mathematics
ISBN : WISC:89007600760

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Numerical Methods in Fracture Mechanics by D. R. J. Owen,Anthony Roger Luxmoore Pdf

Engineering Fracture Mechanics

Author : D. R. J. Owen,A. J. Fawkes
Publisher : Unknown
Page : 322 pages
File Size : 42,9 Mb
Release : 1983
Category : Finite element method
ISBN : STANFORD:36105030589001

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Engineering Fracture Mechanics by D. R. J. Owen,A. J. Fawkes Pdf

Numerical Methods in Fracture Mechanics

Author : Anthony Roger Luxmoore,D. R. J. Owen
Publisher : Unknown
Page : 696 pages
File Size : 52,7 Mb
Release : 1990
Category : Technology & Engineering
ISBN : UOM:39015019636680

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Numerical Methods in Fracture Mechanics by Anthony Roger Luxmoore,D. R. J. Owen Pdf

Numerical Fracture Mechanics

Author : M.H. Aliabadi,D.P. Rooke
Publisher : Springer Science & Business Media
Page : 296 pages
File Size : 42,8 Mb
Release : 1991-07-31
Category : Science
ISBN : 0792311752

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Numerical Fracture Mechanics by M.H. Aliabadi,D.P. Rooke Pdf

The purpose of this book is to present, describe and demonstrate the use of numerical methods in solving crack problems in fracture mechanics. The text concentrates, to a large extent, on the application of the Boundary Element Method (BEM) to fracture mechanics, although an up-to-date account of recent advances in other numerical methods such as the Finite Element Method is also presented. The book is an integrated presentation of modem numerical fracture mechanics, it contains a compilation of the work of many researchers as well as accounting for some of authors' most recent work on the subject. It is hoped that this book will bridge the gap that exists between specialist books on theoretical fracture mechanics on one hand, and texts on numerical methods on the other. Although most of the methods presented are the latest developments in the field of numerical fracture mechanics, the authors have also included some simple techniques which are essential for understanding the physical principles that govern crack problems in general. Different numerical techniques are described in detail and where possible simple examples are included, as well as test results for more complicated problems. The book consists of six chapters. The first chapter initially describes the historical development of theoretical fracture mechanics, before proceeding to present the basic concepts such as energy balance, stress intensity factors, residual strength and fatigue crack growth as well as briefly describing the importance of stress intensity factors in corrosion and residual stress cracking.

Numerical Fracture Mechanics

Author : M.H. Aliabadi,D.P. Rooke
Publisher : Springer
Page : 0 pages
File Size : 52,9 Mb
Release : 2013-05-14
Category : Science
ISBN : 9401133603

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Numerical Fracture Mechanics by M.H. Aliabadi,D.P. Rooke Pdf

The purpose of this book is to present, describe and demonstrate the use of numerical methods in solving crack problems in fracture mechanics. The text concentrates, to a large extent, on the application of the Boundary Element Method (BEM) to fracture mechanics, although an up-to-date account of recent advances in other numerical methods such as the Finite Element Method is also presented. The book is an integrated presentation of modem numerical fracture mechanics, it contains a compilation of the work of many researchers as well as accounting for some of authors' most recent work on the subject. It is hoped that this book will bridge the gap that exists between specialist books on theoretical fracture mechanics on one hand, and texts on numerical methods on the other. Although most of the methods presented are the latest developments in the field of numerical fracture mechanics, the authors have also included some simple techniques which are essential for understanding the physical principles that govern crack problems in general. Different numerical techniques are described in detail and where possible simple examples are included, as well as test results for more complicated problems. The book consists of six chapters. The first chapter initially describes the historical development of theoretical fracture mechanics, before proceeding to present the basic concepts such as energy balance, stress intensity factors, residual strength and fatigue crack growth as well as briefly describing the importance of stress intensity factors in corrosion and residual stress cracking.

Computational Methods in Fracture Mechanics

Author : Ferri M.H.Aliabadi,A.P. Cisilino
Publisher : Trans Tech Publications Ltd
Page : 158 pages
File Size : 50,9 Mb
Release : 2010-12-06
Category : Technology & Engineering
ISBN : 9783038134862

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Computational Methods in Fracture Mechanics by Ferri M.H.Aliabadi,A.P. Cisilino Pdf

Volume is indexed by Thomson Reuters BCI (WoS). The existence of crack-like flaws cannot be precluded in any engineering structure. At the same time, the increasing demand for energy- and material-conservation dictates that structures be designed with smaller and smaller safety factors. Consequently, accurate quantitative estimates of the flaw-tolerance of structures are of direct concern to the prevention of fracture in load-bearing components of all kinds: ranging from space satellites and aircraft to bone prosthesis and home appliances.

Numerical Methods in Fracture Mechanics

Author : Anonim
Publisher : Unknown
Page : 698 pages
File Size : 43,6 Mb
Release : 1990
Category : Fracture mechanics
ISBN : CORNELL:31924051079824

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Numerical Methods in Fracture Mechanics by Anonim Pdf

Fracture Mechanics

Author : D. T. Read
Publisher : ASTM International
Page : 1108 pages
File Size : 44,5 Mb
Release : 1988
Category : Fractura de sólidos
ISBN : 9780803109490

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Fracture Mechanics by D. T. Read Pdf

Finite Elements in Fracture Mechanics

Author : Meinhard Kuna
Publisher : Springer Science & Business Media
Page : 464 pages
File Size : 46,5 Mb
Release : 2013-07-19
Category : Science
ISBN : 9789400766808

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Finite Elements in Fracture Mechanics by Meinhard Kuna Pdf

Fracture mechanics has established itself as an important discipline of growing interest to those working to assess the safety, reliability and service life of engineering structures and materials. In order to calculate the loading situation at cracks and defects, nowadays numerical techniques like finite element method (FEM) have become indispensable tools for a broad range of applications. The present monograph provides an introduction to the essential concepts of fracture mechanics, its main goal being to procure the special techniques for FEM analysis of crack problems, which have to date only been mastered by experts. All kinds of static, dynamic and fatigue fracture problems are treated in two- and three-dimensional elastic and plastic structural components. The usage of the various solution techniques is demonstrated by means of sample problems selected from practical engineering case studies. The primary target group includes graduate students, researchers in academia and engineers in practice.

Boundary Element Analysis in Computational Fracture Mechanics

Author : T.A. Cruse
Publisher : Springer Science & Business Media
Page : 171 pages
File Size : 53,6 Mb
Release : 2012-12-06
Category : Science
ISBN : 9789400913851

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Boundary Element Analysis in Computational Fracture Mechanics by T.A. Cruse Pdf

The Boundary Integral Equation (BIE) method has occupied me to various degrees for the past twenty-two years. The attraction of BIE analysis has been its unique combination of mathematics and practical application. The EIE method is unforgiving in its requirement for mathe matical care and its requirement for diligence in creating effective numerical algorithms. The EIE method has the ability to provide critical inSight into the mathematics that underlie one of the most powerful and useful modeling approximations ever devised--elasticity. The method has even revealed important new insights into the nature of crack tip plastic strain distributions. I believe that EIE modeling of physical problems is one of the remaining opportunities for challenging and fruitful research by those willing to apply sound mathematical discipline coupled with phys ical insight and a desire to relate the two in new ways. The monograph that follows is the summation of many of the successes of that twenty-two years, supported by the ideas and synergisms that come from working with individuals who share a common interest in engineering mathematics and their application. The focus of the monograph is on the application of EIE modeling to one of the most important of the solid mechanics disciplines--fracture mechanics. The monograph is not a trea tise on fracture mechanics, as there are many others who are far more qualified than I to expound on that topic.

Numerical Methods in Fracture Mechanics

Author : Anthony Roger Luxmoore
Publisher : Unknown
Page : 908 pages
File Size : 55,5 Mb
Release : 1987
Category : Mathematics
ISBN : WISC:89014665558

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Numerical Methods in Fracture Mechanics by Anthony Roger Luxmoore Pdf

Fracture Mechanics

Author : E.E. Gdoutos
Publisher : Springer Science & Business Media
Page : 391 pages
File Size : 49,7 Mb
Release : 2005-07-25
Category : Technology & Engineering
ISBN : 9781402031533

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Fracture Mechanics by E.E. Gdoutos Pdf

New developments in the applications of fracture mechanics to engineering problems have taken place in the last years. Composite materials have extensively been used in engineering problems. Quasi-brittle materials including concrete, cement pastes, rock, soil, etc. all benefit from these developments. Layered materials and especially thin film/substrate systems are becoming important in small volume systems used in micro and nanoelectromechancial systems (MEMS and NEMS). Nanostructured materials are being introduced in our every day life. In all these problems fracture mechanics plays a major role for the prediction of failure and safe design of materials and structures. These new challenges motivated the author to proceed with the second edition of the book. The second edition of the book contains four new chapters in addition to the ten chapters of the first edition. The fourteen chapters of the book cover the basic principles and traditional applications, as well as the latest developments of fracture mechanics as applied to problems of composite materials, thin films, nanoindentation and cementitious materials. Thus the book provides an introductory coverage of the traditional and contemporary applications of fracture mechanics in problems of utmost technological importance. With the addition of the four new chapters the book presents a comprehensive treatment of fracture mechanics. It includes the basic principles and traditional applications as well as the new frontiers of research of fracture mechanics during the last three decades in topics of contemporary importance, like composites, thin films, nanoindentation and cementitious materials. The book contains fifty example problems and more than two hundred unsolved problems. A "Solutions Manual" is available upon request for course instructors from the author.

Computational Methods in the Mechanics of Fracture

Author : Satya N. Atluri
Publisher : North Holland
Page : 434 pages
File Size : 53,9 Mb
Release : 1986
Category : Technology & Engineering
ISBN : STANFORD:36105030468289

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Computational Methods in the Mechanics of Fracture by Satya N. Atluri Pdf

This volume not only covers the fundamental concepts of fracture mechanics, but also the computational methodologies necessary for practical engineering designs aimed at fracture control. It gives a concise summary of various fracture theories: linear elastic, elastic-plastic, and dynamic fracture mechanics of metals and composites. Novel numerical methods (finite element and boundary element) that enable the treatment of complicated engineering problems are emphasized. Examined are problems of linear elastic fracture of metallic and non-metallic composite materials, three-dimensional problems of surface flaws, elastic-plastic fracture, stable crack growth, and dynamic crack propagation. A comprehensive outline of the energetic approach and energy integrals on fracture mechanics is also given. Contents: Preface. Parts: I. Chapters: 1. Fracture: Mechanics or Art? (F. Erdogan). II. 2. Linear Elastic Fracture Mechanics (A.S. Kobayashi). 3. Elastic-Plastic Fracture (Quasi-Static) (S.N. Atluri and A.S. Kobayashi). 4. Dynamic Crack Propagation in Solids (L.B. Freund). 5. Energetic Approaches and Path-Independent Integrals in Fracture Mechanics (S.N. Atluri). III. 6.

Fracture Mechanics

Author : Alan T. Zehnder
Publisher : Springer Science & Business Media
Page : 235 pages
File Size : 47,6 Mb
Release : 2012-01-03
Category : Science
ISBN : 9789400725959

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Fracture Mechanics by Alan T. Zehnder Pdf

Fracture mechanics is a vast and growing field. This book develops the basic elements needed for both fracture research and engineering practice. The emphasis is on continuum mechanics models for energy flows and crack-tip stress- and deformation fields in elastic and elastic-plastic materials. In addition to a brief discussion of computational fracture methods, the text includes practical sections on fracture criteria, fracture toughness testing, and methods for measuring stress intensity factors and energy release rates. Class-tested at Cornell, this book is designed for students, researchers and practitioners interested in understanding and contributing to a diverse and vital field of knowledge.

Fracture Mechanics in Layered and Graded Solids

Author : Tian Xiaohong,Quentin Zhong Qi Yue
Publisher : Walter de Gruyter GmbH & Co KG
Page : 317 pages
File Size : 51,7 Mb
Release : 2014-06-23
Category : Science
ISBN : 9783110297973

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Fracture Mechanics in Layered and Graded Solids by Tian Xiaohong,Quentin Zhong Qi Yue Pdf

Mechanical responses of solid materials are governed by their material properties. The solutions for estimating and predicting the mechanical responses are extremely difficult, in particular for non-homogeneous materials. Among these, there is a special type of materials whose properties are variable only along one direction, defined as graded materials or functionally graded materials (FGMs). Examples are plant stems and bones. Artificial graded materials are widely used in mechanical engineering, chemical engineering, biological engineering, and electronic engineering. This work covers and develops boundary element methods (BEM) to investigate the properties of realistic graded materials. It is a must have for practitioners and researchers in materials science, both academic and in industry. Covers analysis of properties of graded materials. Presents solutions based methods for analysis of fracture mechanics. Presents two types of boundary element methods for layered isotropic materials and transversely isotropic materials. Written by two authors with extensive international experience in academic and private research and engineering.