Extended Finite Element Method For Crack Propagation

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Extended Finite Element Method for Crack Propagation

Author : Sylvie Pommier,Anthony Gravouil,Nicolas Moes,Alain Combescure
Publisher : John Wiley & Sons
Page : 271 pages
File Size : 47,7 Mb
Release : 2013-03-04
Category : Technology & Engineering
ISBN : 9781118622698

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Extended Finite Element Method for Crack Propagation by Sylvie Pommier,Anthony Gravouil,Nicolas Moes,Alain Combescure Pdf

Novel techniques for modeling 3D cracks and their evolution in solids are presented. Cracks are modeled in terms of signed distance functions (level sets). Stress, strain and displacement field are determined using the extended finite elements method (X-FEM). Non-linear constitutive behavior for the crack tip region are developed within this framework to account for non-linear effect in crack propagation. Applications for static or dynamics case are provided.

Extended Finite Element Method

Author : Amir R. Khoei
Publisher : John Wiley & Sons
Page : 600 pages
File Size : 41,5 Mb
Release : 2015-02-23
Category : Science
ISBN : 9781118457689

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Extended Finite Element Method by Amir R. Khoei Pdf

Introduces the theory and applications of the extended finite element method (XFEM) in the linear and nonlinear problems of continua, structures and geomechanics Explores the concept of partition of unity, various enrichment functions, and fundamentals of XFEM formulation. Covers numerous applications of XFEM including fracture mechanics, large deformation, plasticity, multiphase flow, hydraulic fracturing and contact problems Accompanied by a website hosting source code and examples

Extended Finite Element and Meshfree Methods

Author : Timon Rabczuk,Jeong-Hoon Song,Xiaoying Zhuang,Cosmin Anitescu
Publisher : Academic Press
Page : 638 pages
File Size : 51,9 Mb
Release : 2019-11-13
Category : Technology & Engineering
ISBN : 9780128141076

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Extended Finite Element and Meshfree Methods by Timon Rabczuk,Jeong-Hoon Song,Xiaoying Zhuang,Cosmin Anitescu Pdf

Extended Finite Element and Meshfree Methods provides an overview of, and investigates, recent developments in extended finite elements with a focus on applications to material failure in statics and dynamics. This class of methods is ideally suited for applications, such as crack propagation, two-phase flow, fluid-structure-interaction, optimization and inverse analysis because they do not require any remeshing. These methods include the original extended finite element method, smoothed extended finite element method (XFEM), phantom node method, extended meshfree methods, numerical manifold method and extended isogeometric analysis. This book also addresses their implementation and provides small MATLAB codes on each sub-topic. Also discussed are the challenges and efficient algorithms for tracking the crack path which plays an important role for complex engineering applications. Explains all the important theory behind XFEM and meshfree methods Provides advice on how to implement XFEM for a range of practical purposes, along with helpful MATLAB codes Draws on the latest research to explore new topics, such as the applications of XFEM to shell formulations, and extended meshfree and extended isogeometric methods Introduces alternative modeling methods to help readers decide what is most appropriate for their work

Static and Dynamic Crack Propagation in Brittle Materials with XFEM

Author : Fleming Petri, Wagner Carlos
Publisher : kassel university press GmbH
Page : 233 pages
File Size : 41,7 Mb
Release : 2013-01-01
Category : Mathematical models
ISBN : 9783862194360

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Static and Dynamic Crack Propagation in Brittle Materials with XFEM by Fleming Petri, Wagner Carlos Pdf

The aim of this thesis is the simulation of progressive damage in brittle materials due to cracking. With this aim, the mathematical crack model will be solved using the eXtended Finite Element Method for the spatial discretization and time integration schemes for the numerical integration in the time domain. The time integration schemes considered are the Generalized-? method, the continuous GALERKIN method and the discontinuous GALERKIN method.

Extended Finite Element Method

Author : Zhuo Zhuang,Zhanli Liu,Binbin Cheng,Jianhui Liao
Publisher : Academic Press
Page : 285 pages
File Size : 47,9 Mb
Release : 2014-03-24
Category : Technology & Engineering
ISBN : 9780124078567

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Extended Finite Element Method by Zhuo Zhuang,Zhanli Liu,Binbin Cheng,Jianhui Liao Pdf

Extended Finite Element Method provides an introduction to the extended finite element method (XFEM), a novel computational method which has been proposed to solve complex crack propagation problems. The book helps readers understand the method and make effective use of the XFEM code and software plugins now available to model and simulate these complex problems. The book explores the governing equation behind XFEM, including level set method and enrichment shape function. The authors outline a new XFEM algorithm based on the continuum-based shell and consider numerous practical problems, including planar discontinuities, arbitrary crack propagation in shells and dynamic response in 3D composite materials. Authored by an expert team from one of China's leading academic and research institutions Offers complete coverage of XFEM, from fundamentals to applications, with numerous examples Provides the understanding needed to effectively use the latest XFEM code and software tools to model and simulate dynamic crack problems

Extended Finite Element Method

Author : Soheil Mohammadi
Publisher : Wiley-Blackwell
Page : 288 pages
File Size : 52,6 Mb
Release : 2008-03-31
Category : Mathematics
ISBN : STANFORD:36105123359023

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Extended Finite Element Method by Soheil Mohammadi Pdf

Provides an introduction to the concepts of extended finite element method (XFEM) for fracture analysis of structures, as well as for other related engineering applications. The book is self contained, with summaries of both classical and modern computational techniques. It also includes numerical examples describing various features of XFEM.

The Virtual Crack Closure Technique: History, Approach and Applications

Author : Ronald Krueger
Publisher : Unknown
Page : 66 pages
File Size : 55,5 Mb
Release : 2002
Category : Electronic
ISBN : NASA:31769000714348

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The Virtual Crack Closure Technique: History, Approach and Applications by Ronald Krueger Pdf

An overview of the virtual crack closure technique is presented. The approach used is discussed, the history summarized, and insight into its applications provided. Equations for two-dimensional quadrilateral elements with linear and quadratic shape functions are given. Formula for applying the technique in conjuction with three-dimensional solid elements as well as plate/shell elements are also provided. Necessary modifications for the use of the method with geometrically nonlinear finite element analysis and corrections required for elements at the crack tip with different lengths and widths are discussed. The problems associated with cracks or delaminations propagating between different materials are mentioned briefly, as well as a strategy to minimize these problems. Due to an increased interest in using a fracture mechanics based approach to assess the damage tolerance of composite structures in the design phase and during certification, the engineering problems selected as examples and given as references focus on the application of the technique to components made of composite materials.

Multiscale Modeling of Heterogeneous Structures

Author : Jurica Sorić,Peter Wriggers,Olivier Allix
Publisher : Springer
Page : 381 pages
File Size : 41,8 Mb
Release : 2017-11-30
Category : Science
ISBN : 9783319654638

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Multiscale Modeling of Heterogeneous Structures by Jurica Sorić,Peter Wriggers,Olivier Allix Pdf

This book provides an overview of multiscale approaches and homogenization procedures as well as damage evaluation and crack initiation, and addresses recent advances in the analysis and discretization of heterogeneous materials. It also highlights the state of the art in this research area with respect to different computational methods, software development and applications to engineering structures. The first part focuses on defects in composite materials including their numerical and experimental investigations; elastic as well as elastoplastic constitutive models are considered, where the modeling has been performed at macro- and micro levels. The second part is devoted to novel computational schemes applied on different scales and discusses the validation of numerical results. The third part discusses gradient enhanced modeling, in particular quasi-brittle and ductile damage, using the gradient enhanced approach. The final part addresses thermoplasticity, solid-liquid mixtures and ferroelectric models. The contents are based on the international workshop “Multiscale Modeling of Heterogeneous Structures” (MUMO 2016), held in Dubrovnik, Croatia in September 2016.

Finite Element Analysis for Biomedical Engineering Applications

Author : Z. C. Yang
Publisher : CRC Press
Page : 302 pages
File Size : 50,5 Mb
Release : 2019-03-14
Category : Mathematics
ISBN : 9780429592157

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Finite Element Analysis for Biomedical Engineering Applications by Z. C. Yang Pdf

Finite element analysis has been widely applied to study biomedical problems. This book aims to simulate some common medical problems using finite element advanced technologies, which establish a base for medical researchers to conduct further investigations. This book consists of four main parts: (1) bone, (2) soft tissues, (3) joints, and (4) implants. Each part starts with the structure and function of the biology and then follows the corresponding finite element advanced features, such as anisotropic nonlinear material, multidimensional interpolation, XFEM, fiber enhancement, UserHyper, porous media, wear, and crack growth fatigue analysis. The final section presents some specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent. All modeling files are attached in the appendixes of the book. This book will be helpful to graduate students and researchers in the biomedical field who engage in simulations of biomedical problems. The book also provides all readers with a better understanding of current advanced finite element technologies. Details finite element modeling of bone, soft tissues, joints, and implants Presents advanced finite element technologies, such as fiber enhancement, porous media, wear, and crack growth fatigue analysis Discusses specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent Explains principles for modeling biology Provides various descriptive modeling files

Contact and Fracture Mechanics

Author : Pranav H. Darji,Veera Darji
Publisher : BoD – Books on Demand
Page : 288 pages
File Size : 41,5 Mb
Release : 2018-05-30
Category : Science
ISBN : 9781789231588

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Contact and Fracture Mechanics by Pranav H. Darji,Veera Darji Pdf

This book contains two sections: Chapters 1-7 deal with contact mechanics, and Chapters 8-13 deal with fracture mechanics. The different contributions of this book will cover the various advanced topics of research. It provides some needed background with respect to contact mechanics, fracture mechanics and the use of finite element methods in both. All the covered chapters of this book are of a theoretical and applied nature, suitable for the researchers of engineering, physics, applied mathematics and mechanics with an interest in computer simulation of contact and fracture problems.

Dynamic Fracture

Author : K. Ravi-Chandar
Publisher : Elsevier
Page : 264 pages
File Size : 48,5 Mb
Release : 2004-10-16
Category : Science
ISBN : 0080472559

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Dynamic Fracture by K. Ravi-Chandar Pdf

Dynamic fracture in solids has attracted much attention for over a century from engineers as well as physicists due both to its technological interest and to inherent scientific curiosity. Rapidly applied loads are encountered in a number of technical applications. In some cases such loads might be applied deliberately, as for example in problems of blasting, mining, and comminution or fragmentation; in other cases, such dynamic loads might arise from accidental conditions. Regardless of the origin of the rapid loading, it is necessary to understand the mechanisms and mechanics of fracture under dynamic loading conditions in order to design suitable procedures for assessing the susceptibility to fracture. Quite apart from its repercussions in the area of structural integrity, fundamental scientific curiosity has continued to play a large role in engendering interest in dynamic fracture problems In-depth coverage of the mechanics, experimental methods, practical applications Summary of material response of different materials Discussion of unresolved issues in dynamic fracture

Advanced Finite Element Methods with Applications

Author : Thomas Apel,Ulrich Langer,Arnd Meyer,Olaf Steinbach
Publisher : Springer
Page : 428 pages
File Size : 44,7 Mb
Release : 2019-06-28
Category : Mathematics
ISBN : 9783030142445

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Advanced Finite Element Methods with Applications by Thomas Apel,Ulrich Langer,Arnd Meyer,Olaf Steinbach Pdf

Finite element methods are the most popular methods for solving partial differential equations numerically, and despite having a history of more than 50 years, there is still active research on their analysis, application and extension. This book features overview papers and original research articles from participants of the 30th Chemnitz Finite Element Symposium, which itself has a 40-year history. Covering topics including numerical methods for equations with fractional partial derivatives; isogeometric analysis and other novel discretization methods, like space-time finite elements and boundary elements; analysis of a posteriori error estimates and adaptive methods; enhancement of efficient solvers of the resulting systems of equations, discretization methods for partial differential equations on surfaces; and methods adapted to applications in solid and fluid mechanics, it offers readers insights into the latest results.

Partition of Unity Methods

Author : St¿phane Bordas,Alexander Menk,Sundararajan Natarajan
Publisher : John Wiley & Sons
Page : 373 pages
File Size : 49,6 Mb
Release : 2023-10-16
Category : Technology & Engineering
ISBN : 9780470667088

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Partition of Unity Methods by St¿phane Bordas,Alexander Menk,Sundararajan Natarajan Pdf

PARTITION OF UNITY METHODS Master the latest tool in computational mechanics with this brand-new resource from distinguished leaders in the field While it is the number one tool for computer aided design and engineering, the finite element method (FEM) has difficulties with discontinuities, singularities, and moving boundaries. Partition of unity methods addresses these challenges and is now increasingly implemented in commercially available software. Partition of Unity Methods delivers a detailed overview of its fundamentals, in particular the extended finite element method for applications in solving moving boundary problems. The distinguished academics and authors introduce the XFEM as a natural extension of the traditional finite element method (FEM), through straightforward one-dimensional examples which form the basis for the subsequent introduction of higher dimensional problems. This book allows readers to fully understand and utilize XFEM just as it becomes ever more crucial to industry practice. Partition of Unity Methods explores all essential topics on this key new technology, including: Coverage of the difficulties faced by the finite element method and the impetus behind the development of XFEM The basics of the finite element method, with discussions of finite element formulation of linear elasticity and the calculation of the force vector An introduction to the fundamentals of enrichment A revisitation of the partition of unity enrichment A description of the geometry of enrichment features, with discussions of level sets for stationary interfaces Application of XFEM to bio-film, gradient theories, and three dimensional crack propagation Perfect for researchers and postdoctoral candidates working in the field of computational mechanics, Partition of Unity Methods also has a place in the libraries of senior undergraduate and graduate students working in the field. Finite element and CFD analysts and developers in private industry will also greatly benefit from this book.

Crystal Plasticity Finite Element Methods

Author : Franz Roters,Philip Eisenlohr,Thomas R. Bieler,Dierk Raabe
Publisher : John Wiley & Sons
Page : 188 pages
File Size : 53,5 Mb
Release : 2011-08-04
Category : Technology & Engineering
ISBN : 9783527642090

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Crystal Plasticity Finite Element Methods by Franz Roters,Philip Eisenlohr,Thomas R. Bieler,Dierk Raabe Pdf

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.