Peridynamic theory and its applications [electronic resource] / Erdogan Madenci, Erkan Oterkus.
2014
TA409
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Title
Peridynamic theory and its applications [electronic resource] / Erdogan Madenci, Erkan Oterkus.
Author
Madenci, Erdogan, author.
ISBN
9781461484653 electronic book
1461484650 electronic book
9781461484646
1461484650 electronic book
9781461484646
Published
New York : Springer, 2014.
Language
English
Description
1 online resource (xii, 289 pages) : illustrations
Item Number
10.1007/978-1-4614-8465-3 doi
Call Number
TA409
Dewey Decimal Classification
620.1/126
Summary
The peridynamic theory provides the capability for improved modeling of progressive failure in materials and structures, paving the way to address multi-physics and multi-scale problems. Because it is based on concepts not commonly used in the past, the purpose of this book is to explain the peridynamic theory in a single framework. It presents not only the theoretical basis but also its numerical implementation. The book begins with an overview of the peridynamic theory and derivation of its governing equations. The relationship between peridynamics and classical continuum mechanics is established, and this leads to the ordinary state-based peridynamics formulations for both isotropic and composite materials. Numerical treatments of the peridynamic equations are presented in detail along with solutions to many benchmark and demonstration problems. In order to take advantage of salient features of peridynamics and the finite element method, a coupling technique is also described. Finally, an extension of the peridynamic theory for thermal diffusion and fully coupled thermomechanics is presented with applications.
Bibliography, etc. Note
Includes bibliographical references and index.
Access Note
Access limited to authorized users.
Source of Description
Description based on online resource; title from PDF title page (SpringerLink, viewed October 28, 2013).
Added Author
Oterkus, Erkan, author.
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Table of Contents
Peridynamic Theory
Peridynamics for Local Interactions
Peridynamics for Isotropic Materials
Peridynamics for Laminated Composite Materials
Damage Prediction
Numerical Solution Methods
Benchmark Problems
Nonimpact Problems
Impact Problems
Coupling of the Peridynamic Theory and Finite Element Methods
Peridynamic Thermal Diffusion
Fully Coupled Peridynamic Thermomechanics.
Peridynamics for Local Interactions
Peridynamics for Isotropic Materials
Peridynamics for Laminated Composite Materials
Damage Prediction
Numerical Solution Methods
Benchmark Problems
Nonimpact Problems
Impact Problems
Coupling of the Peridynamic Theory and Finite Element Methods
Peridynamic Thermal Diffusion
Fully Coupled Peridynamic Thermomechanics.