This unique and comprehensive introduction offers an unrivalled and in-depth understanding of the computational-based thermodynamic approach and how it can be used to guide the design of materials for robust performances, integrating basic fundamental concepts with experimental techniques and practical industrial applications, to provide readers with a thorough grounding in the subject. Topics covered range from the underlying thermodynamic principles, to the theory and methodology of thermodynamic data collecting, analysis, modeling, and verification, with details on free energy, phase equilibrium, phase diagrams, chemical reactions, and electrochemistry. In thermodynamic modelling, the authors focus on the CALPHAD method and first-principles calculations. They also provide guidance for use of YPHON, a mixed-space phonon code developed by the authors for polar materials based on the supercell approach. Including worked examples, case studies, and end-of-chapter problems, this is an essential resource for students, researchers, and practitioners in materials science.



Zusammenfassung
Integrates fundamental concepts with experimental data and practical applications, including worked examples and end-of-chapter problems.
Titel
Computational Thermodynamics of Materials
EAN
9781316551875
ISBN
978-1-316-55187-5
Format
E-Book (epub)
Genre
Veröffentlichung
30.06.2016
Digitaler Kopierschutz
Adobe-DRM
Dateigrösse
19.22 MB
Jahr
2016
Untertitel
Englisch