Elastoplasticity theory

This book was written to serve as the standard textbook for instruction of elastoplasticity theory. It opens with an explanation of the mathematics and continuum mechanics which are necessary as a foundation of elastoplasticity theory. Subsequently, conventional and unconventional elastoplasticity t...

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Détails bibliographiques
Auteur principal: Hashiguchi, Koichi, 1942-
Autres auteurs: Pfeiffer, Friedrich (Éditeur intellectuel), Wriggers, Peter (Éditeur intellectuel)
Format: Livre numérique
Langue:Anglais
Publié: Berlin, Heidelberg : Springer Berlin Heidelberg [20..].
Cham : Springer Nature
Édition:1st ed. 2009.
Collection:Lecture Notes in Applied and Computational Mechanics 42
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Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Elastoplasticity theory, Koichi Hashiguchi, 2009, Berlin, Springer, 1 volume (xv-416 pages), Lecture notes in applied and computational mechanics, 978-3-642-00272-4
• Elastoplasticity Theory, Texte imprimé, 9783642003530
• Elastoplasticity Theory, Texte imprimé, 9783642101328
• Elastoplasticity theory, Koichi Hashiguchi, 2009, Berlin, Springer, 1 volume (xv-416 pages), Lecture notes in applied and computational mechanics, 978-3-642-00272-4
Table des matières:
  • Tensor Analysis Motion and Strain (Rate) Conservation Laws and Stress Tensors Objectivity and Corotational Rate Tensor Elastic Constitutive Equations Basic Formulations for Elastoplastic Constitutive Equations Unconventional Elastoplasticity Model: Subloading Surface Model Cyclic Plasticity Model: Extended Subloading Surface Model Viscoplastic Constitutive Equations Constitutive Equations of Metals Constitutive Equations of Soils Corotational Rate Tensor Localization of Deformation Numerical Calculation Constitutive Equation for Friction.
  • 1. Tensor analysis
  • 2. Motion and strain (rate)
  • 3. Conservation laws and stress tensors
  • 4. Objectivity and corotational rate tensor
  • 5. Elastic constitutive equations
  • 6. Basic formulations for elastoplastic constitutive equations
  • 7. Unconventional elastoplasticity model : subloading surface model
  • 8. Cyclic plasticity model : extended subloading surface model
  • 9. Viscoplastic constitutive equations
  • 10. Constitutive equations of metals
  • 11. Constitutive equations of soils
  • 12. Corotational rate tensor
  • 13. Localization of deformation
  • 14. Numerical calculation [Return mapping method]
  • 15. Constitutive equation for friction.