
Polycrystalline Materials: Synthesis, Performance and Applications
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Content
- Intro
- Contents
- Preface
- Chapter 1
- Basic Concepts and Classical Models of Solid State Sintering
- Abstract
- 1. Introduction
- 2. Historical Development of Sintering Theories
- 3. Dihedral Angle, Driving Force and Mechanisms of Solid State Sintering
- 4. Stages and Kinetics of Solid State Sintering
- Initial Stage
- Intermediate Stage
- Final Stage
- 5. Grain Growth Models and Grain Size Distributions
- 6. Combined-Stage Sintering Models and Master Sintering Curves
- Conclusion
- Acknowledgment
- References
- Chapter 2
- Modelling and Analysis of Morphological Anisotropy of Polycrystalline Materials
- Abstract
- 1. Introduction
- 2. Measuring Methods
- 2.1. Definition of Deformation
- 2.2. Orientation Measurement
- 2.3. Orientation - Deformation Conversion Model
- 2.4. Evaluation of Local Plastic Deformation in the Tetrakaidecahedronal Model of Grained Structure from Stereological Principles
- 3. Experimental
- Conclusion
- Acknowledgments
- References
- Appendix
- Chapter 3
- Electric Current Assisted Sintering of Ceramics - Steps and Pitfalls on the Way to Transparency
- Abstract
- 1. Introduction
- 2. Electric Current Assisted Sintering (ECAS) - Principle and Historical Development
- 3. Sintering Mechanisms and Special Issues Related to ECAS of Transparent Ceramics
- 4. Optical Properties and Microstructural Factors Affecting Transmittance
- 5. Comparison of Literature Data for ECAS Conditions and Optical Properties
- 5.1. Simple Oxides
- 5.2. Mixed Oxides
- 5.3. Phosphates and Silicates
- 5.4. Non-Oxides, Oxynitrides and Composites
- Conclusion
- Acknowledgments
- References
- Appendix A. Refractive Indices and Theoretical Maximum Transmittances
- Appendix B. Details of ECAS Regimes and Optical Properties
- Appendix C. Summary of ECAS Regimes from the Literature
- Index
- Blank Page
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