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Thermodynamics, Microstructures and Plasticity

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ISBN-10: 140201368X

ISBN-13: 9781402013683

Edition: 2003

Authors: Alphonse Finel, Dominique Mazi�re, Muriel Veron

List price: $129.00
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This is a comprehensive assessment of the various theoretical and numerical methods currently in use to investigate microstructural transformations and mechanical properties of inhomogeneous systems, from the atomic scale to the macroscopic.
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Book details

List price: $129.00
Copyright year: 2003
Publisher: Springer Netherlands
Publication date: 7/31/2003
Binding: Paperback
Pages: 511
Size: 6.50" wide x 9.75" long x 1.00" tall
Weight: 1.804
Language: English

Introduction
Introduction to modelling techniques in diffusive phase transformations
Phase Transformation and Microstructures: Mesoscopic Methods
Mean field theories and Ginzburg-Landau methods
Mesophase phase field modeling of engineering materials: microstructure and microelasticity
Phase-field models of solidification and fracture
The dynamics of interfaces in elastically stressed solids
Cluster dynamics
Sensitivity of texture development during grain growth to anisotropy of grain boundary properties
Computer Modelling of diffusion controlled transformations
Solute drag: a review of the Force and Dissapation approaches to the effect of solute on grain and interphase boundary motion
On the jerky nature of martensitic transformation
Microstructures and Plasticity
Deformation of single phase and multiphase materials up to large plastic strains
Microstructural aspects of cycle deformation and fatigue of metals
High temperature plasticity of metallic materials
Transformation-induced plasticity in steels
Modelling of Plasticity and Related Microstructures
Grain size effect of plasticity modelled by molecular dynamics
Mixed atomistic/continuum methods: static and dynamic quasicontinuum methods
Boundary problems in DD simulations
Discrete dislocation plasticity
Surface instabilities and misfit dislocations in annealed heteroepitaxial films
On the role of the strain-rate sensitivity in collective dislocation effects
Statistical properties of dislocation ensembles
Collective behaviour of defect ensembles and some nonlinear aspects of failure
Field theory of crystal defect structure
Kinetics and Phase Transformations at the Atomic Scale
Monte-Carlo methods
Kinetic Monte-Carlo simulations in crystalline alloys: principles and selected applications
Role of atomic-scale simulation in the modeling of solidification microstructure
Applications of Monte-Carlo simulations to the kinetics of phase transformations
Experimental Investigations of Microstructures
Experimental investigations of microstructures
Atomic-scale tomography of microstructures and plastic properties
Analysis of displacement and strain at the atomic level by high-resolution electron microscopy
Dislocation organization under stress: TiA1
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