Phase transitions in materials
Temperature-composition phase diagrams -- Diffusion -- Nucleation -- Effects of diffusion and nucleation on phase transformations -- Energy -- Entropy -- Pressure -- Interactions in microstructures and constrained equilibrium -- Atom movements with the vacancy mechanism -- Thermodynamics and phase t...
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Format: | UnknownFormat |
Sprache: | eng |
Veröffentlicht: |
Cambridge, New York, NY
Cambridge University Press
2020
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Ausgabe: | Second edition |
Schlagworte: | |
Online Zugang: | Inhaltsverzeichnis |
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Zusammenfassung: | Temperature-composition phase diagrams -- Diffusion -- Nucleation -- Effects of diffusion and nucleation on phase transformations -- Energy -- Entropy -- Pressure -- Interactions in microstructures and constrained equilibrium -- Atom movements with the vacancy mechanism -- Thermodynamics and phase transitions at surfaces -- Melting -- Solidification -- Phase transformations with interfaces : 1. Microstructure -- Phase transformations with interfaces : 2. Energetics and kinetics -- Spinodal decomposition -- Phase field theory -- Method of concentration waves and chemical ordering -- Diffusionless transformations -- Thermodynamics of nanomaterials -- Magnetic and electronic phase transitions. "This book explains the thermodynamics and kinetics of most of the important phase transitions in materials science. It is a textbook, so the emphasis is on explanations of phenomena rather than a scholarly assessment of their origins. The goal is explanations that are concise, clear, and reasonably complete. The level and detail are appropriate for upper division undergraduate students and graduate students in materials science andmaterials physics. The book should also be useful for researchers who are not specialists in these fields. The book is organized for approximately sequential coverage in a graduate-level course. The four parts of the book serve different purposes, however, and should be approached differently"-- |
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Beschreibung: | Includes bibliographical references and index |
Beschreibung: | xix, 587 Seiten Diagramme, Illustrationen |
ISBN: | 9781108485784 978-1-108-48578-4 |