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Computational inelasticity J C Simo; Thomas J R Hughes

By: Contributor(s): Material type: TextTextSeries: Interdisciplinary applied mathematics ; v. 7.Publication details: New York : Springer, ©1998.Description: xiv, 392 pages : illustrations, 24 cmISBN:
  • 9781475771695
Subject(s): DDC classification:
  • 531.382 SIM
Contents:
This book describes the theoretical foundations of inelasticity, its numerical formulation and implementation. The subject matter described herein constitutes a representative sample of state-of-the-art methodology currently used in inelastic calculations. Computational Inelasticity will be of great interest to researchers and graduate students in various branches of engineering, especially civil, aeronautical and mechanical, and applied mathematics. 1. Motivation. One-Dimensional Plasticity and Viscoplasticity -- 2. Classical Rate-Independent Plasticity and Viscoplasticity -- 3. Integration Algorithms for Plasticity and Viscoplasticity -- 4. Discrete Variational Formulation and Finite-Element Implementation -- 5. Nonsmooth Multisurface Plasticity and Viscoplasticity -- 6. Numerical Analysis of General Return Mapping Algorithms -- 7. Nonlinear Continuum Mechanics and Phenomenological Plasticity Models -- 8. Objective Integration Algorithms for Rate Formulations of Elastoplasticity -- 9. Phenomenological Plasticity Models Based on the Notion of an Intermediate Stress-Free Configuration -- 10. Viscoelasticity.
List(s) this item appears in: New Arrivals Oct-Nov 2021 - Central Library IIITDMK
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Holdings
Item type Current library Collection Call number Status Date due Barcode
Books Books IIITDM Kurnool General Stacks Non-fiction 531.382 SIM (Browse shelf(Opens below)) Available 0003901
Books Books IIITDM Kurnool General Stacks Non-fiction 531.382 SIM (Browse shelf(Opens below)) Available 0003902
Reference Reference IIITDM Kurnool Reference Reference 531.382 SIM (Browse shelf(Opens below)) Not for loan 0002425

This book describes the theoretical foundations of inelasticity, its numerical formulation and implementation. The subject matter described herein constitutes a representative sample of state-of-the-art methodology currently used in inelastic calculations. Computational Inelasticity will be of great interest to researchers and graduate students in various branches of engineering, especially civil, aeronautical and mechanical, and applied mathematics. 1. Motivation. One-Dimensional Plasticity and Viscoplasticity --
2. Classical Rate-Independent Plasticity and Viscoplasticity --
3. Integration Algorithms for Plasticity and Viscoplasticity --
4. Discrete Variational Formulation and Finite-Element Implementation --
5. Nonsmooth Multisurface Plasticity and Viscoplasticity --
6. Numerical Analysis of General Return Mapping Algorithms --
7. Nonlinear Continuum Mechanics and Phenomenological Plasticity Models --
8. Objective Integration Algorithms for Rate Formulations of Elastoplasticity --
9. Phenomenological Plasticity Models Based on the Notion of an Intermediate Stress-Free Configuration --
10. Viscoelasticity.

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