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Introduction to Finite Strain Theory for Continuum Elasto–Plasticity: Wiley Series in Computational Mechanics

Autor KK Hashiguchi
en Limba Engleză Hardback – noi 2012
Comprehensive introduction to finite elastoplasticity, addressing various analytical and numerical analyses & including state-of-the-art theories Introduction to Finite Elastoplasticity presents introductory explanations that can be readily understood by readers with only a basic knowledge of elastoplasticity, showing physical backgrounds of concepts in detail and derivation processes of almost all equations. The authors address various analytical and numerical finite strain analyses, including new theories developed in recent years, and explain fundamentals including the push-forward and pull-back operations and the Lie derivatives of tensors. As a foundation to finite strain theory, the authors begin by addressing the advanced mathematical and physical properties of continuum mechanics. They progress to explain a finite elastoplastic constitutive model, discuss numerical issues on stress computation, implement the numerical algorithms for stress computation into large-deformation finite element analysis and illustrate several numerical examples of boundary-value problems. Programs for the stress computation of finite elastoplastic models explained in this book are included in an appendix, and the code can be downloaded from an accompanying website.
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Specificații

ISBN-13: 9781119951858
ISBN-10: 1119951852
Pagini: 440
Dimensiuni: 172 x 244 x 25 mm
Greutate: 0.79 kg
Ediția:New.
Editura: Wiley
Seria Wiley Series in Computational Mechanics

Locul publicării:Chichester, United Kingdom

Public țintă

Primary: Research engineers and scientists working with computational solid mechanics.
Secondary: Postgraduate and graduate students of civil, mechanical, aerospace and materials engineering as well as applied mathematics. Would suit as a reference text for courses in computational mechanics that are offered by many universities

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Descriere

This book provides an easy-to-understand introduction to finite elastoplasticity. It addresses various analytical and numerical finite strain analyses, including new theories developed in recent years, and explains fundamentals, including the push-forward and pull-back operations and the Lie derivatives of tensors.