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Finite-Element Plasticity and Metalforming Analysis

Finite-Element Plasticity and Metalforming Analysis

Finite-Element Plasticity and Metalforming Analysis

G. W. Rowe, University of Birmingham
C. E. N. Sturgess, University of Birmingham
P. Hartley, University of Birmingham
I. Pillinger, University of Birmingham
July 2005
Paperback
9780521017312
£36.99
GBP
Paperback
USD
eBook

    Finite Element Plasticity and Metalforming Analysis is concerned with describing a computer based technique for aiding the optimisation of metalforming processes. These methods should enable tool and product designers to reduce development lead times for the introduction of new products, to optimise the process and to help improve the quality and reliability of products. The book is specifically devoted to the finite element method and its use in plasticity problems. It details the theoretical background assuming little previous knowledge, and describes how it can be implemented and used to examine realistic metalforming processes. Forging, rolling and extrusion are typical processes covered, in addition to specific problems such as ductile fracture and how it can be predicted. It is the first text that describes in detail elastic-plastic finite-element theory and how it is used in forming analyses. The technique described can be used to simulate metal flow in 2- and 3-D problems and can provide details of stress, strain, strain-rate and temperature distributions in the workpiece as it is being formed.

    Product details

    April 2011
    Adobe eBook Reader
    9780511876981
    0 pages
    0kg
    This ISBN is for an eBook version which is distributed on our behalf by a third party.

    Table of Contents

    • Preface
    • Nomenclature
    • 1. General introduction to the finite-element method
    • 2. Basic formulation for elastic deformation
    • 3. Small-deformation elastic-plastic analysis
    • 4. Finite-element plasticity on microcomputers
    • 5. Finite-strain formulation for metalforming analysis
    • 6. Implementation of the finite-strain formulation
    • 7. Practical applications
    • 8. Future developments
    • Appendices
    • Bibliography
    • Index.