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  • © 2017

Foundations of Elastoplasticity: Subloading Surface Model

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  • Understandable book even for beginners in the field of elastoplasticity
  • Explains the physical background with illustrations and descriptions of detailed derivation processes without a jump
  • The third edition is completely revised including a large amount of completely new chapters and sections
  • Includes supplementary material: sn.pub/extras

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Table of contents (22 chapters)

  1. Front Matter

    Pages i-xxiii
  2. Vector and Tensor Analysis

    • Koichi Hashiguchi
    Pages 1-63
  3. Motion and Strain (Rate)

    • Koichi Hashiguchi
    Pages 65-97
  4. Stress Tensors and Conservation Laws

    • Koichi Hashiguchi
    Pages 99-125
  5. Objectivity and Objective (Rate) Tensors

    • Koichi Hashiguchi
    Pages 127-152
  6. Elastic Constitutive Equations

    • Koichi Hashiguchi
    Pages 153-164
  7. Extended Subloading Surface Model

    • Koichi Hashiguchi
    Pages 257-274
  8. Constitutive Equations of Metals

    • Koichi Hashiguchi
    Pages 275-315
  9. Constitutive Equations of Soils

    • Koichi Hashiguchi
    Pages 317-394
  10. Viscoplastic Constitutive Equations

    • Koichi Hashiguchi
    Pages 415-429
  11. Damage Model

    • Koichi Hashiguchi
    Pages 431-461
  12. Plasticity for Phase Transformation

    • Koichi Hashiguchi
    Pages 463-469
  13. Corotational Rate Tensor

    • Koichi Hashiguchi
    Pages 471-487
  14. Localization of Deformation

    • Koichi Hashiguchi
    Pages 489-499
  15. Crystal Plasticity

    • Koichi Hashiguchi
    Pages 567-601

About this book

This book is the standard text book of elastoplasticity in which the elastoplasticity theory is comprehensively described from the conventional theory for the monotonic loading to the unconventional theory for the cyclic loading behavior. Explanations of vector-tensor analysis and continuum mechanics are provided first as a foundation for elastoplasticity theory, covering various strain and stress measures and their rates with their objectivities.

Elastoplasticity has been highly developed by the creation and formulation of the subloading surface model which is the unified fundamental law for irreversible mechanical phenomena in solids. The assumption that the interior of the yield surface is an elastic domain is excluded in order to describe the plastic strain rate due to the rate of stress inside the yield surface in this model aiming at the prediction of cyclic loading behavior, although the yield surface enclosing the elastic domain is assumed in allthe elastoplastic models other than the subloading surface model. Then, the plastic strain rate develops continuously as the stress approaches the yield surface, providing the advantages: 1) The tangent modulus changes continuously, 2) The yield judgment whether the stress reaches the yield surface is not required, 3) The stress is automatically attracted to the yield surface even when it goes out from the yield surface by large loading increments in numerical calculation and 4) The finite strain theory based on the multiplicative decomposition of deformation gradient tensor is formulated exactly. Consequently, the monotonic, the cyclic, the non-proportional loading behaviors for wide classes of materials including soils, rocks and concretes in addition to metals can be described rigorously by the subloading surface model.

    Further, the viscoplastic constitutive equations in a general rate from the quasi-static to the impact loadings are described, and constitutive equations of friction behavior and its application to the prediction of stick-slip phenomena, etc. are also described in detail. In addition, the return-mapping algorithm, the consistent tangent modulus, etc. are explained for the numerical analyses. Further, the damage, the phase-transformation and the crystal plasticity models are also described in brief. All of them are based on the subloading surface model. The elastoplasticity analysis will be advanced steadily based on the subloading surface model.

Reviews

“The book covers an amazingly wide range of issues in elastoplasticity, and in continuum mechanics in general. It is written in modern notation and easily accessible to readers with a minimal background in continuum mechanics and tensor analysis. … Altogether, the book gives an excellent introduction to the vast area of elastoplasticity and can be recommended not only for beginners in the field, but also for senior scientists interested in alternatives to the classical approach.” (Dieter Weichert, Mathematical Reviews, October, 2019)

Authors and Affiliations

  • MSC Software Ltd., Tokyo, Japan

    Koichi Hashiguchi

Bibliographic Information

  • Book Title: Foundations of Elastoplasticity: Subloading Surface Model

  • Authors: Koichi Hashiguchi

  • DOI: https://doi.org/10.1007/978-3-319-48821-9

  • Publisher: Springer Cham

  • eBook Packages: Engineering, Engineering (R0)

  • Copyright Information: Springer International Publishing AG 2017

  • Softcover ISBN: 978-3-319-84021-5Published: 08 May 2018

  • eBook ISBN: 978-3-319-48821-9Published: 06 May 2017

  • Edition Number: 3

  • Number of Pages: XXIII, 796

  • Number of Illustrations: 35 b/w illustrations, 160 illustrations in colour

  • Topics: Solid Mechanics, Classical Mechanics

Buy it now

Buying options

eBook USD 219.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 279.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access