Finite Element And Boundary Element Analyses Of Large Strain Large Displacement Problems In Elastoviscoplasticity PDF Download

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Large Strain Finite Element Method

Large Strain Finite Element Method
Author: Antonio A. Munjiza
Publisher: John Wiley & Sons
Total Pages: 486
Release: 2015-02-16
Genre: Mathematics
ISBN: 1118405307

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An introductory approach to the subject of large strains and large displacements in finite elements. Large Strain Finite Element Method: A Practical Course, takes an introductory approach to the subject of large strains and large displacements in finite elements and starts from the basic concepts of finite strain deformability, including finite rotations and finite displacements. The necessary elements of vector analysis and tensorial calculus on the lines of modern understanding of the concept of tensor will also be introduced. This book explains how tensors and vectors can be described using matrices and also introduces different stress and strain tensors. Building on these, step by step finite element techniques for both hyper and hypo-elastic approach will be considered. Material models including isotropic, unisotropic, plastic and viscoplastic materials will be independently discussed to facilitate clarity and ease of learning. Elements of transient dynamics will also be covered and key explicit and iterative solvers including the direct numerical integration, relaxation techniques and conjugate gradient method will also be explored. This book contains a large number of easy to follow illustrations, examples and source code details that facilitate both reading and understanding. Takes an introductory approach to the subject of large strains and large displacements in finite elements. No prior knowledge of the subject is required. Discusses computational methods and algorithms to tackle large strains and teaches the basic knowledge required to be able to critically gauge the results of computational models. Contains a large number of easy to follow illustrations, examples and source code details. Accompanied by a website hosting code examples.


The Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media

The Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media
Author: Roland W. Lewis
Publisher: John Wiley & Sons
Total Pages: 517
Release: 1999-01-07
Genre: Technology & Engineering
ISBN: 0471928097

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Seit der Veröffentlichung der Erstauflage 1987 haben Forschungaktivitäten und professionelle Anwendungen auf dem Gebiet poröser Medien rapide zugenommen. Deshalb wurde die 2. Auflage komplett überarbeitet und aktualisiert. Führende Experten stellen die mechanischen und numerischen Aspekte des Fließens im porösen Medium sehr detailliert dar. (09/98)


A Finite Element Formulation for Problems of Large Strain and Large Displacement

A Finite Element Formulation for Problems of Large Strain and Large Displacement
Author: Hugh D. Hibbitt
Publisher:
Total Pages: 36
Release: 1969
Genre: Elasticity
ISBN:

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An incremental and piecewise linear finite element theory is developed for the large displacement, large strain regime with particular reference to elastic-plastic behavior in metals. The resulting equations, though more complex, are in a similar form to those previously developed for large displacement, small strain problems, the only additional term being an initial load stiffness matrix which is dependent on current loads. This similarity in form means that existing nonlinear general purpose programs may easily be extended to include finite strains. A large displacement, small strain formulation (as applicable to problems of structural stability) is obtained from this theory by assuming that changes in length of line elements and relative rotation of orthogonal line elements are negligible compared to unity. The simplified equations are in essential agreement with previous formulations in the literature. The only difference which is observed is the persistence of the initial load stiffness matrix, which may be significant in some cases. (Author).