Computational Materials System Design

 
 
Springer (Verlag)
  • erschienen am 1. September 2018
 
  • Buch
  • |
  • Softcover
  • |
  • 248 Seiten
978-3-319-88575-9 (ISBN)
 
This book provides state-of-the-art computational approaches for accelerating materials discovery, synthesis, and processing using thermodynamics and kinetics. The authors deliver an overview of current practical computational tools for materials design in the field. They describe ways to integrate thermodynamics and kinetics and how the two can supplement each other.
Softcover reprint of the original 1st ed. 2018
  • Englisch
  • Cham
  • |
  • Schweiz
Springer International Publishing
  • Für Beruf und Forschung
  • 67 farbige Abbildungen, 21 s/w Abbildungen, 67 farbige Tabellen
  • |
  • 67 Tables, color; 67 Illustrations, color; 21 Illustrations, black and white; VIII, 233 p. 88 illus., 67 illus. in color.
  • Höhe: 235 mm
  • |
  • Breite: 155 mm
  • |
  • Dicke: 13 mm
  • 382 gr
978-3-319-88575-9 (9783319885759)
10.1007/978-3-319-68280-8
weitere Ausgaben werden ermittelt

Dr. Dongwon Shin is a Research and Development staff member at Oak Ridge National Laboratory.

Dr. James Saal is the Manager of Technology at QuesTek Innovation, LLC.

Chapter 1. Computational Materials Design, Chapter 2.Hierarchical Materials System Design, Chapter 3. Computational thermodynamics.- Chapter 4.High-Temperature Thermochemistry.- Chapter 5.HHigh-Throughput First-Principles Thermodynamics.- Chapter 6.Phase-Field Simulations.- Chapter 7.Diffusion Kinetics in Multicomponent System.- Chapter 8.Mechanical modeling.- Chapter 9.Solidifcation modeling for casting.- Chapter 10.Ab inito Molecular Dynamics.- chapter 11.Materials Database and Informatics.- Chapter 12. Functional Materials.
This book provides state-of-the-art computational approaches for accelerating materials discovery, synthesis, and processing using thermodynamics and kinetics. The authors deliver an overview of current practical computational tools for materials design in the field. They describe ways to integrate thermodynamics and kinetics and how the two can supplement each other.

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