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Generalized Continua and Dislocation Theory [electronic resource] : Theoretical Concepts, Computational Methods and Experimental Verification / edited by Carlo Sansour, Sebastian Skatulla.

Contributor(s): Series: CISM Courses and Lectures ; 537Publisher: Vienna : Springer Vienna, 2012Description: X, 318 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783709112229
Subject(s): Genre/Form: Additional physical formats: Printed edition:: No titleDDC classification:
  • 620.1 23
LOC classification:
  • TA405-409.3
  • QA808.2
Online resources:
Contents:
Defects, dislocations and the general theory -- Approaches to generalized continua -- Generalized continuum modelling of crystal plasticity -- Introduction to discrete dislocation dynamics.
In: Springer eBooksSummary: The book contains four lectures on generalized continua and dislocation theory, reflecting the treatment of the subject at different scales. G. Maugin provides a continuum formulation of defects at the heart of which lies the notion of the material configuration and the material driving forces of in-homogeneities such as dislocations, disclinations, point defects, cracks, phase-transition fronts and shock waves. C. Sansour and S. Skatulla start with a compact treatment of linear transformation groups with subsequent excursion into the continuum theory of generalized continua. After a critical assessment a unified framework of the same is presented. The next contribution by S. Forest gives an account on generalized crystal plasticity. Finally, H. Zbib provides an account of dislocation dynamics and illustrates its fundamental importance at the smallest scale. In three contributions extensive computational results of many examples are presented.
Item type: eBooks
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Defects, dislocations and the general theory -- Approaches to generalized continua -- Generalized continuum modelling of crystal plasticity -- Introduction to discrete dislocation dynamics.

The book contains four lectures on generalized continua and dislocation theory, reflecting the treatment of the subject at different scales. G. Maugin provides a continuum formulation of defects at the heart of which lies the notion of the material configuration and the material driving forces of in-homogeneities such as dislocations, disclinations, point defects, cracks, phase-transition fronts and shock waves. C. Sansour and S. Skatulla start with a compact treatment of linear transformation groups with subsequent excursion into the continuum theory of generalized continua. After a critical assessment a unified framework of the same is presented. The next contribution by S. Forest gives an account on generalized crystal plasticity. Finally, H. Zbib provides an account of dislocation dynamics and illustrates its fundamental importance at the smallest scale. In three contributions extensive computational results of many examples are presented.

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