Integral Materials Modeling
Towards Physics-based Through-process Models
(Sprache: Englisch)
Adopting a holistic approach to materials simulation, this monograph covers four very important structural materials: aluminum, carbon steels, superalloys, and plastics. Following an introduction to the concept of integral modeling, the book goes on to...
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Klappentext zu „Integral Materials Modeling “
Adopting a holistic approach to materials simulation, this monograph covers four very important structural materials: aluminum, carbon steels, superalloys, and plastics. Following an introduction to the concept of integral modeling, the book goes on to cover a wide range of production steps and usage, including melt flow and solidification behavior, coating, shaping, thermal treatment, deep drawing, hardness and ductility, damage initiation, and deformation behavior.
Inhaltsverzeichnis zu „Integral Materials Modeling “
The Concept of Integral ModelingThe New Frontiers in Computational Materials Science - Theory, Engineering, Added Value
Multiscale Phase Field Modeling of Shear-dominated Processes During Phase Transformation and Plastic Deformation
Select Topics of Phase Field Modeling
Atomic Scale Computer Simulations of Metallic Nanoparticles
Minimal Free Energy Density of Annealed Polycrystals
Modeling of Dynamic Grain Growth and its Consequences
Modeling of Severe Plastic Deformation of Microstructure, Texture and Strength
Aluminium Through-process Modeling - From Casting to Cup Drawing
From Casting to Failure - Modeling the Process Chain of Steels
Modeling and Simulation of Production, Properties and In-Service Degradation of Coated Gas Turbine Blades
Predicting the Deformation Behaviour of a Moulded Plastics Pipe Fitting by Integrative Simulation
Computation of 3D Convection in Liquids
Microstructure Modeling of Solidification
Modeling of Coating
Simulation of Metal Forming
Modeling of Heat Treatment of Metallic Materials in Stationary and Non-stationary Temperature Fields
Simulation of Deep Drawing of Al Sheets
Development and Application of a Through-process Model for Property Predictions of a Steel Shape
Deformation and Initiation of Damage in a Coated Turbine Blade
Modeling of Deformation Behaviour of a Plastic Pipe Fitting
Autoren-Porträt
Professor Gottstein is the Head of the Institute of Physical Metallurgy and Metal Physics of the Rhineland-Westphalian Technical University of Aachen, Germany. Having obtained his academic degrees from RWTH, he worked for altogether nine years in the USA, as a Visiting Scientist in the Argonne National Laboratory, Associate Professor and then as a Professor at Michigan State University. In 1989 he took up his present appointment at RWTH.Professor Gottstein has authored ten textbooks, more than 450 articles and 42 invited papers for international conferences. He has received numerous scientific awards, including the Max Planck Research Award of the Alexander von Humboldt Foundation, the Masing Award of the German Metallurgical Society and the Heyn Medal of the German Materials Society. Since January 2004 he is an editor of the scientific journal Acta Materialia.
Bibliographische Angaben
- XVII, 297 Seiten, 150 Abbildungen, Maße: 17,7 x 24,7 cm, Gebunden, Englisch
- Herausgegeben: Günter Gottstein
- Verlag: Wiley-VCH
- ISBN-10: 3527317112
- ISBN-13: 9783527317110
- Erscheinungsdatum: 23.02.2007
Sprache:
Englisch
Rezension zu „Integral Materials Modeling “
"...a very good compilation and compares at the top of the list of books on similar subjects." (Journal of Metals Online, October 23, 2007)
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