Computational Methods in Elasticity and Plasticity
Solids and Porous Media. An easy to use finite element software program used to generate the one-element and multi-element problems is available for download
(Sprache: Englisch)
This book presents the latest developments in the area of elasto-plastic finite element modeling of solids, particulates and pressure-dependent materials and structures. It also contains problem sets, exercises and a solutions manual for instructors.
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This book presents the latest developments in the area of elasto-plastic finite element modeling of solids, particulates and pressure-dependent materials and structures. It also contains problem sets, exercises and a solutions manual for instructors.
Klappentext zu „Computational Methods in Elasticity and Plasticity “
Computational Methods in Elasticity and Plasticity: Solids and Porous Media presents the latest developments in the area of elastic and elasto-plastic finite element modeling of solids, porous media and pressure-dependent materials and structures. The book covers the following topics in depth: the mathematical foundations of solid mechanics, the finite element method for solids and porous media, the theory of plasticity and the finite element implementation of elasto-plastic constitutive models. The book also includes:-A detailed coverage of elasticity for isotropic and anisotropic solids.
-A detailed treatment of nonlinear iterative methods that could be used for nonlinear elastic and elasto-plastic analyses.
-A detailed treatment of a kinematic hardening von Mises model that could be used to simulate cyclic behavior of solids.
-Discussion of recent advances in the analysis of porous media and pressure-dependent materials in more detail than other books currently available.
Computational Methods in Elasticity and Plasticity: Solids and Porous Media also contains problem sets, worked examples and a solutions manual for instructors.
"Computational Methods in Elasticity and Plasticity: Solids and Porous Media" presents the latest developments in the area of elasto-plastic finite element modeling of solids, particulates and pressure-dependent materials and structures. The book covers the following topics in depth: the mathematical foundations of solid mechanics, the finite element equations for solids and porous media, the theory of plasticity (as applied to constitutive modeling), as well as: Complete coverage of elasto-plastic modeling, presenting details of the finite element method, constitutive models, implementation and boundary value application results, an easy to use finite element software program used to generate the one-element and multi-element problems is available for download, discussion of recent advances in the analysis of porous materials and pressure-dependent materials in more detail than other books currently available.
"Computational Methods in Elasticity and Plasticity: Solids and Porous Media" also contains problem sets, exercises and a solutions manual for instructors.
"Computational Methods in Elasticity and Plasticity: Solids and Porous Media" also contains problem sets, exercises and a solutions manual for instructors.
Inhaltsverzeichnis zu „Computational Methods in Elasticity and Plasticity “
Mathematical Foundations.- Governing Equations in Solid Mechanics.- Elastic Constitutive Laws.- Finite Element Analysis of Solids and Structures.- Governing Equations in Porous Media.- Finite Element Analysis of Porous Media.- Methods of Nonlinear Analysis.- Theory of Rate-Independent Elasto-Plasticity.- Methods of Integrating Elasto-Plastic Constitutive Equations.- The von Mises Model and Its Integration.- The Modified Cam-Clay Model and Its Integration.- The Drucker-Prager Model and Its Integration.- The Sliding-Rolling Granular Material Model and Its Integration.
Autoren-Porträt von A. Anandarajah
A . Anandarajah is a professor at The Johns Hopkins University, where he is a member of the Civil Engineering Department. Professor Anandarajah has almost 30 years of experience as an educator and researcher. He teaches undergraduate and graduate courses in numerical modeling, solid mechanics and geomechanics.
Bibliographische Angaben
- Autor: A. Anandarajah
- 2010, XV, 653 Seiten, Masse: 16,4 x 24,1 cm, Gebunden, Englisch
- Verlag: Springer, Berlin
- ISBN-10: 1441963782
- ISBN-13: 9781441963789
Sprache:
Englisch
Rezension zu „Computational Methods in Elasticity and Plasticity “
From the reviews: "The text is mostly self-contained and provides a well-detailed presentation of all topics needed, including a fair amount of discussed examples creating excellent opportunities for interested research students to expand and test their own results. The presentation of every topic is update and deep enough to meet anyone working on the title problems. ... the students of different techniques (e.g., boundary element practitioners) should also profit from this remarkable textbook. Especially, research engineering students interested in stress analysis should profit immensely from this noteworthy contribution." (J. C. F. Telles, Zentralblatt MATH, Vol. 1211, 2011)
Pressezitat
"This book was written to serve as a textbook for graduate students in the area of computational methods in elasticity and plasticity. However, the subject matter is presented in such a manner that makes it equally suitable for advanced-level undergraduate students. ... The reviewer found this book interesting to read and believes that the author has done an excellent job in presenting the material in a lucid and easy-to-follow manner for its audience." (V. K. Arya, Mathematical Reviews, June, 2015)"The text is mostly self-contained and provides a well-detailed presentation of all topics needed, including a fair amount of discussed examples creating excellent opportunities for interested research students to expand and test their own results. The presentation of every topic is update and deep enough to meet anyone working on the title problems. ... the students of different techniques (e.g., boundary element practitioners) should also profit from this remarkable textbook. Especially, research engineering students interested in stress analysis should profit immensely from this noteworthy contribution." (J. C. F. Telles, Zentralblatt MATH, Vol. 1211, 2011)
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