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Emergent Process Methods for High-Technology Ceramics

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Cover of 'Emergent Process Methods for High-Technology Ceramics'

Table of Contents

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    Book Overview
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    Chapter 1 Interfacial Electrochemistry of Disperse Systems
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    Chapter 2 How Colloid Stability Affects the Behavior of Suspensions
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    Chapter 3 Formation and Stability of Colloidal Dispersions of Fine Particles in Water
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    Chapter 4 Flocculation and Filtration of Colloidal Particles
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    Chapter 5 The Science of the Interactions of Colloidal Particles and Ceramics Processing
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    Chapter 6 Preparation of Shaped Glasses Through the Sol-Gel Method
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    Chapter 7 Inorganic Oxide Gels and Gel-Monoliths: Their Crystallization Behavior
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    Chapter 8 Boron Nitride Fiber Synthesis from Boric Oxide Precursors
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    Chapter 9 Some Common Aspects of the Formation of Nonoxide Powders by the Vapor Reaction Method
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    Chapter 10 Synthesis of Powders and Thin Films by Laser Induced Gas Phase Reactions
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    Chapter 11 Preparation of Zirconia-Alumina Fine Powders by Hydrothermal Oxidation of Zr-A1 Alloys
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    Chapter 12 Combustion Synthesis of Transition Metal Nitrides
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    Chapter 13 The Influence of Powder Synthesis Techniques on Processes Occurring During Compact Formation and its Sintering
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    Chapter 14 Dispersion and Packing of Narrow Size Distribution Ceramic Powders
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    Chapter 15 Plasma Sintering of Ceramics
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    Chapter 16 Plasma Melting of Selected Compositions in the A1 2 O 3 -ZrO 2 -SiO 2 System
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    Chapter 17 Liquid Phase Sintering of Ceramics
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    Chapter 18 Precision Digital Dilatometry: A Microcomputer-Based Approach to Sintering Studies
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    Chapter 19 The Conversion of Methylchloropolysilanes and Polydisilylazanes to Silicon Carbide and Silicon Carbide/Silicon Nitride Ceramics, Respectively
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    Chapter 20 Silicon-Nitrogen Polymers and Ceramics Derived from Reactions of Dichlorosilane, H 2 SiCl 2
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    Chapter 21 Formation of Ceramic Composites and Coatings Utilizing Polymer Pyrolysis
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    Chapter 22 Gas Analysis During the Pyrolysis of Carbosilane
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    Chapter 23 Chemical Vapor Deposition of Ceramic Materials
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    Chapter 24 The Application of Thermodynamic Calculations to Chemical Vapor Deposition Processes
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    Chapter 25 CVD of Si 3 N 4 and Its Composites
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    Chapter 26 Preparation of Amorphous Si 3 N 4 -BN Composites by Chemical Vapor Deposition
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    Chapter 27 A Morphological Study of Silicon Borides Prepared by CVD
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    Chapter 28 A Morphological Study of Silicon Carbide Prepared by Chemical Vapor Deposition
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    Chapter 29 Low-Temperature Preparation of Pyrolytic Carbon
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    Chapter 30 Laser Chemical Vapor Deposition (LCVD)
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    Chapter 31 Ion Beam Techniques for the Deposition of Ceramic Thin Films
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    Chapter 32 Ionized-Cluster Beam Deposition and Epitaxy
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    Chapter 33 Ion Beam Deposition of Ceramic-Like Coatings
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    Chapter 34 Laser Surface Melting of Metals and Alloys
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    Chapter 35 Laser Processing of Ceramics
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    Chapter 36 Microstructural Analysis of Rapidly Solidified Alumina
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    Chapter 37 Structure of Ceramic Surfaces Modified by Ion Beam Techniques
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    Chapter 38 Microstructure and Mechanical Properties of Ion-Implanted Ceramics
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    Chapter 39 Microhardness of N-Implanted Yttria Stabilized ZrO 2
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    Chapter 40 Hot Isostatic Pressing of Ceramic Materials
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    Chapter 41 Dense Ceramic Parts Hot Pressed to Shape by HIP
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    Chapter 42 Fabrication of Si 3 N 4 Ceramics with Additives Of Metal Nitrides by High Pressure Hot-Pressing and Hiping
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    Chapter 43 Diffusion Bonding of A1 2 O 3 and Si 3 N 4 Ceramics by Hiping
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    Chapter 44 Relationship Between Densification and High Temperature Mechanical Properties of HIPed Silicon Nitride
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    Chapter 45 Microstructural Changes During Hot Isostatic Pressing of Sintered Lead Zirconate Titanate
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    Chapter 46 Dynamic Compaction of Powders
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    Chapter 47 Dynamic Compaction of Ceramic Powders
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    Chapter 48 Explosive Consolidation of Aluminum Nitride Ceramic Powder: A Case History
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    Chapter 49 Computer Simulation of Dynamic Compaction
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    Chapter 50 Investigation of a Method to Consolidate Hard Materials in a Tough Matrix
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    Chapter 51 Modern Uses of Explosive Pressure—From Rock Blasting to Synthetic Diamond
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    Chapter 52 Shock-Induced Modification of Inorganic Powders
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    Chapter 53 Densification Kinetics of Shock-Activated Nitrides
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    Chapter 54 Rate Controlled Sintering of Explosively Shock-Conditioned Alumina Powders
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    Chapter 55 High Pressure Processing of High Technology Ceramics
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    Chapter 56 Diamond Anvil Cell Technology For P,T Studies Of Ceramics: ZrO 2 (8 mol% Y 2 O 3 )
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    Chapter 57 Effect of Strong Shock Compression on Covalent Materials and High Pressure Sintering
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    Chapter 58 A New Approach to the Reaction Sintering of Superhard Materials Under Very High Pressure
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    Chapter 59 Eratum to: Laser Surface Melting of Metals and Alloys
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Title
Emergent Process Methods for High-Technology Ceramics
Published by
Springer US, January 1984
DOI 10.1007/978-1-4684-8205-8
ISBNs
978-1-4684-8207-2, 978-1-4684-8205-8
Editors

Davis, Robert F., Palmour, Hayne, Porter, Richard L.

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