Euromat 99, Microstructures, Mechanical Properties and Processes: Computer Simulation and Modelling

Front Cover
The relation between microstructures and mechanical properties has always been a challenge for materials science. Modelling the formation, properties and long term stability of microstructures is one of the most impressive and promising advances of modern materials science.
This book presents recent advances and challenges in this fast evolving cross disciplinary field. It addresses applications of classical physical metallurgy, and the need for new modelling approaches, both on the analytical viewpoint and on the simulation side.
 

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Contents

Coupling of a Crystal Plasticity Finite Element Model with a Probabilistic Cellular
3
From Discrete to Continuum Dislocation Dynamics
22
Application to FeC
40
DEM Simulation of Particle Packing Behavior in Colloidal Forming Processes
53
Improvement of Quality and Productivity for Rolled and Extruded Aluminium Products
70
Computer Simulation
85
Modeling of Dendrite Structure and Microsegregation in Single Crystal Solidification
102
Modeling of Microstructure Evolution and Mechanical Properties in Agehardening
121
Temperature Induced Phase
243
Application of the EBSD Technique to the Study of Dynamic Recrystallisation
256
Mechanical Properties Microstructure Relationships in Aerospace Aluminum Alloys
269
Computational Modeling of Investment Casting
286
Estimation of Boundary Conditions Using Inverse Stationary Methods
299
Numerical Simulation a Comprehensive Quality Control Tool for Steel and Iron Foundries
305
Simulation of the Core Shooting Process
318
Modeling of Solidification Process to Cast EDM Electrodes from Rapid Prototyping
331

Simulation of Mechanical Properties of ULCB_Mn Steel Sheets having a Composite
140
Microstructural Aspects of Endurance Limit of the Nodular Cast Iron
147
Macroscopic and Mesoscopic Models for Fracture in Sheet Metal Forming
160
Determination of ThermalMechanical Properties of Aluminium Base PM Material
178
Development of an Advanced Rheological Tool for polymer melt processing
196
On Applicability of Life Prediction Models during Low Cycle Fatigue of Steels
209
Drop Weight NDTT Test Results for Steel Grades with Yield Stresses 355 to 1000
226
Models for Numeric Simulation of Extrusion Stamping Processes for Metallic Powders
350
Computer Simulation of the Solidification in Large Ingot with Respect to Directional
368
Monitoring and Control of the SmeltCondition of Materials with High Melting Temperature
379
A Planning Tool for the 3D Simulation of Temperature Fields Stresses and Deformations
392
Author Index
411
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About the author (2000)

Professeur a l'Institut National Polytechnique de Grenoble