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Sintering Theory and Practice
Author:Randall M. German
ISBN: 0-471-05786-X
Hardcover
568 pages
January 1996




RANDALL M. GERMAN is Brush Chair Professor in Materials at the ennsylvania State University. Formerly Hunt Professor of Materials Engineering at the Rensselaer Polytechnic Institute, he has held a number of industrial, academic, and national laboratory positions. Professor German has published over 400 articles in journals and conference proceedings, holds ten patents, and has authored several books, including Powder Metallurgy Science, Second Edition, which is the standard text for university and industrial courses. He is the recipient of a number of achievement awards in the field of sintering and powder metallurgy, and is listed in Who's Who in America and Who's Who in Engineering.  

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ISBN: 0750663855
Title: Sintering: Densification, Grain Growth and Microstructure
Author: Suk-Joong L. Kang
Publisher: Butterworth-Heinemann
Publication Date: 2005-01-19
Number Of Pages: 280

Book Description:
Sintering is the process of forming materials and components from a powder under the action of thermal energy. It is a key materials science subject: most ceramic materials and many specialist metal powder products for use in key industries such as electronics, automotive and aerospace are formed this way. Written by one of the leading experts in the field, this book offers an unrivalled introduction to sintering and sintering processes for students of materials science and engineering, and practicing engineers in industry. The book is unique in providing a complete grounding in the principles of sintering and equal coverage of the three key sintering processes: densification, grain growth and microstructure. Students and professional engineers alike will be attracted by the emphasis on developing a detailed understanding of the theory and practical processes of sintering, the balanced coverage of ceramic and metal sintering, and the accompanying examination questions with selected solutions.
Collection name: Materials & Mechanical

Table of Contents

* Cover
* Frontmatter
o Half Title Page
o Title Page
o Copyright
o CONTENTS
o PREFACE
* PART I: BASIS OF SINTERING SCIENCE
o Chapter 1. SINTERING PROCESSES
+ 1.1 WHAT IS SINTERING?
+ 1.2 CATEGORIES OF SINTERING
+ 1.3 DRIVING FORCE AND BASIC PHENOMENA
+ 1.4 SINTERING VARIABLES
o Chapter 2. THERMODYNAMICS OF THE INTERFACE
+ 2.1 SURFACE ENERGY AND ADSORPTION
+ 2.2 SURFACE TENSION AND SURFACE ENERGY
+ 2.3 THERMODYNAMICS OF CURVED INTERFACES
o Chapter 3. POLYCRYSTALLINE MICROSTRUCTURES
+ 3.1 INTERFACIAL TENSION AND MICROSTRUCTURE
+ 3.2 SINGLE-PHASE MICROSTRUCTURES
+ 3.3 MULTIPHASE MICROSTRUCTURES
o PROBLEMS
o GENERAL REFERENCES FOR SINTERING SCIENCE
o REFERENCES
* PART II: SOLID STATE SINTERING MODELS AND DENSIFICATION
o Chapter 4. INITIAL STAGE SINTERING
+ 4.1 TWO-PARTICLE MODEL
+ 4.2 SINTERING KINETICS
+ 4.3 SINTERING DIAGRAMS
+ 4.4 EFFECT OF SINTERING VARIABLES ON SINTERING KINETICS
+ 4.5 USEFULNESS AND LIMITATIONS OF THE INITIAL STAGE SINTERING THEORY
o Chapter 5. INTERMEDIATE AND FINAL STAGE SINTERING
+ 5.1 INTERMEDIATE STAGE MODEL
+ 5.2 FINAL STAGE MODEL
+ 5.3 ENTRAPPED GASES AND DENSIFICATION
+ 5.4 SINTERING PRESSURE AT FINAL STAGE SINTERING
+ 5.5 POWDER PACKING AND DENSIFICATION
+ 5.6 PRESSURE-ASSISTED SINTERING
+ 5.7 CONSTRAINED SINTERING
o PROBLEMS1
o REFERENCES1
* PART III: GRAIN GROWTH
o Chapter 6. NORMAL GRAIN GROWTH AND SECOND-PHASE PARTICLES
+ 6.1 NORMAL GRAIN GROWTH
+ 6.2 EFFECT OF SECOND-PHASE PARTICLES ON GRAIN GROWTH: ZENER EFFECT
o Chapter 7. GRAIN BOUNDARY SEGREGATION AND GRAIN BOUNDARY MIGRATION
+ 7.1 SOLUTE SEGREGATION AT GRAIN BOUNDARIES
+ 7.2 EFFECT OF SOLUTE SEGREGATION ON GRAIN BOUNDARY MIGRATION
o Chapter 8. INTERFACE MIGRATION UNDER CHEMICAL INEQUILIBRIUM
+ 8.1 GENERAL PHENOMENA
+ 8.2 DRIVING FORCE OF DIFFUSION-INDUCED INTERFACE MIGRATION (DIIM)
+ 8.3 QUANTITATIVE ANALYSIS OF DIIM
+ 8.4 MICROSTRUCTURAL CHARACTERISTICS OF DIIM AND ITS APPLICATION
o Chapter 9. ABNORMAL GRAIN GROWTH
+ 9.1 PHENOMENOLOGICAL THEORY OF ABNORMAL GRAIN GROWTH IN SINGLE-PHASE SYSTEMS
+ 9.2 INTERFACIAL ENERGY ANISOTROPY AND ABNORMAL GRAIN GROWTH
+ 9.3 ABNORMAL GRAIN GROWTH IN CHEMICAL INEQUILIBRIUM
o PROBLEMS2
o REFERENCES2
* PART IV: MICROSTRUCTURE DEVELOPMENT
o Chapter 10. GRAIN BOUNDARY ENERGY AND SINTERING
+ 10.1 THE GRAIN BOUNDARY AS AN ATOM SOURCE
+ 10.2 EFFECT OF GRAIN BOUNDARY ENERGY ON PORE SHRINKAGE
o Chapter 11. GRAIN GROWTH AND DENSIFICATION IN POROUS MATERIALS
+ 11.1 MOBILITY OF AN ISOLATED PORE
+ 11.2 PORE MIGRATION AND GRAIN GROWTH
+ 11.3 PORE/BOUNDARY SEPARATION
+ 11.4 MICROSTRUCTURE DEVELOPMENT IN A POROUS COMPACT
+ 11.5 SCALING LAW AT FINAL STAGE SINTERING
+ 11.6 MODIFICATION OF THERMAL CYCLE AND MICROSTRUCTURE DEVELOPMENT
o PROBLEMS3
o REFERENCES3
* PART V: SINTERING OF IONIC COMPOUNDS
o Chapter 12. SINTERING ADDITIVES AND DEFECT CHEMISTRY
+ 12.1 POINT DEFECTS IN CERAMICS
+ 12.2 FORMATION OF POINT DEFECTS BY ADDITIVES
o Chapter 13. DENSIFICATION AND GRAIN GROWTH IN IONIC COMPOUNDS
+ 13.1 DIFFUSION AND SINTERING IN IONIC COMPOUNDS
+ 13.2 ELECTROSTATIC POTENTIAL EFFECT ON INTERFACE SEGREGATION
+ 13.3 SOLUTE SEGREGATION AND GRAIN BOUNDARY MOBILITY
o PROBLEMS4
o REFERENCES4
* PART VI: LIQUID PHASE SINTERING
o Chapter 14. BASIS OF LIQUID PHASE SINTERING
+ 14.1 BASIC PHENOMENA OF LIQUID PHASE SINTERING
+ 14.2 CAPILLARITY IN LIQUID PHASE SINTERING
o Chapter 15. GRAIN SHAPE AND GRAIN GROWTH IN A LIQUID MATRIX
+ 15.1 CAPILLARY PHENOMENA IN A BINARY TWO-PHASE SYSTEM
+ 15.2 LIFSHITZ SLYOZOV WAGNER (LSW) THEORY
+ 15.3 GRAIN SHAPE IN A LIQUID
+ 15.4 ABNORMAL GRAIN GROWTH IN A LIQUID MATRIX
o Chapter 16. DENSIFICATION MODELS AND THEORIES
+ 16.1 CLASSICAL MODEL AND THEORY
+ 16.2 PORE FILLING MODEL AND THEORY
+ 16.3 ENTRAPPED GASES AND PORE FILLING
+ 16.4 POWDER COMPACTS AND DENSIFICATION
o PROBLEMS5
o REFERENCES5
* INDEX

[ Last edited by westwolf on 2007-1-8 at 03:13 ]
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