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Gradient-Enhanced Continuum Plasticity: Elsevier Series on Plasticity of Materials

Autor George Z. Voyiadjis, Yooseob Song
en Limba Engleză Paperback – 29 mar 2020
Gradient-Enhanced Continuum Plasticity provides an expansive review of gradient-enhanced continuum plasticity from the initial stage to current research trends in experimental, theoretical, computational and numerical investigations. Starting with an overview of continuum mechanics and classical plasticity, the book then delves into concise lessons covering basic principles and applications, such as outlining the use of the finite element method to solve problems with size effects, mesh sensitivity and high velocity impact loading. All major theories are explored, providing readers with a guide to understanding the various concepts of and differences between an array of gradient-enhanced continuum plasticity models.


  • Outlines the concepts of, and differences between, various gradient-enhanced continuum plasticity models
  • Provides guidance on problem-solving for size effects, mesh-sensitivity tests and thermo-mechanical coupling
  • Reviews experimental, numerical and theoretical issues in gradient-enhanced continuum plasticity
  • Describes micromechanical aspects from experimental observations
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Specificații

ISBN-13: 9780128177662
ISBN-10: 0128177667
Pagini: 404
Ilustrații: 150 illustrations (30 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE
Seria Elsevier Series on Plasticity of Materials


Public țintă

researchers and graduate students in materials science and mechanical engineering; secondary audience of R&D/industry professionals;

Cuprins

1. Review of Theoretical Developments on Gradient-Enhanced Continuum Plasticity2. Review of Experimental Observations Gradient-Enhanced Continuum Plasticity3. Review of Numerical Simulations on Gradient Enhanced Continuum Plasticity4. Coupled Thermo-Mechanical Theory for Small Deformation5. Coupled Thermo-Mechanical Theory for Finite Deformation6. Physically-Based Gradient-Enhanced Continuum Plasticity7. Numerical Solutions8. Open Issues9. High Resolution Techniques