Phase Diagrams in Advanced Ceramics
The investigation of multi-component complex systems composed of oxides, nitrides, and carbides has intensified in the last few years. Phase Diagrams in Advanced Ceramics reviews some of the recent advances inthe understanding of these composite systems, providing insight into how phase diagrams can be utilized in the fabrication of whiskers and ceramic-matrix whisker-reinforced ceramics. Phase relations and sintering information is reviewed for transparent polycrystalline oxides. Phase diagrams are discussed to predict alkali oxide corrosion of alumino-silicate references.
  • Understanding the development, manufacture, and use of complex, multi-component ceramic materials composed of silicon nitride-metal oxides-nitride-carbide systems
  • Development and use of whisker and whisker-reinforced ceramics composed of materials such as alumina, silicon-nitride, silicon carbide, and directly solidified eutectic ceramics
  • Application of phase diagrams to the production of advanced composites such as alumina-matrix, zirconium diboride and titanium, hafnium, zirconium, carbides, and borides
  • Phase chemistry in the development of transparent poly-crystal and oxides, including yttria, alumina, and magnesium aluminate
  • Improvements concerning the knowledge of complex multi-component materials composed of oxides, nitrides, and carbides, and knowledge of how to fabricate composite materials containing whiskers and ceramic hosts
  • New developments in making transparent ceramic materials
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Phase Diagrams in Advanced Ceramics
The investigation of multi-component complex systems composed of oxides, nitrides, and carbides has intensified in the last few years. Phase Diagrams in Advanced Ceramics reviews some of the recent advances inthe understanding of these composite systems, providing insight into how phase diagrams can be utilized in the fabrication of whiskers and ceramic-matrix whisker-reinforced ceramics. Phase relations and sintering information is reviewed for transparent polycrystalline oxides. Phase diagrams are discussed to predict alkali oxide corrosion of alumino-silicate references.
  • Understanding the development, manufacture, and use of complex, multi-component ceramic materials composed of silicon nitride-metal oxides-nitride-carbide systems
  • Development and use of whisker and whisker-reinforced ceramics composed of materials such as alumina, silicon-nitride, silicon carbide, and directly solidified eutectic ceramics
  • Application of phase diagrams to the production of advanced composites such as alumina-matrix, zirconium diboride and titanium, hafnium, zirconium, carbides, and borides
  • Phase chemistry in the development of transparent poly-crystal and oxides, including yttria, alumina, and magnesium aluminate
  • Improvements concerning the knowledge of complex multi-component materials composed of oxides, nitrides, and carbides, and knowledge of how to fabricate composite materials containing whiskers and ceramic hosts
  • New developments in making transparent ceramic materials
153.49 In Stock
Phase Diagrams in Advanced Ceramics

Phase Diagrams in Advanced Ceramics

Phase Diagrams in Advanced Ceramics

Phase Diagrams in Advanced Ceramics

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Overview

The investigation of multi-component complex systems composed of oxides, nitrides, and carbides has intensified in the last few years. Phase Diagrams in Advanced Ceramics reviews some of the recent advances inthe understanding of these composite systems, providing insight into how phase diagrams can be utilized in the fabrication of whiskers and ceramic-matrix whisker-reinforced ceramics. Phase relations and sintering information is reviewed for transparent polycrystalline oxides. Phase diagrams are discussed to predict alkali oxide corrosion of alumino-silicate references.
  • Understanding the development, manufacture, and use of complex, multi-component ceramic materials composed of silicon nitride-metal oxides-nitride-carbide systems
  • Development and use of whisker and whisker-reinforced ceramics composed of materials such as alumina, silicon-nitride, silicon carbide, and directly solidified eutectic ceramics
  • Application of phase diagrams to the production of advanced composites such as alumina-matrix, zirconium diboride and titanium, hafnium, zirconium, carbides, and borides
  • Phase chemistry in the development of transparent poly-crystal and oxides, including yttria, alumina, and magnesium aluminate
  • Improvements concerning the knowledge of complex multi-component materials composed of oxides, nitrides, and carbides, and knowledge of how to fabricate composite materials containing whiskers and ceramic hosts
  • New developments in making transparent ceramic materials

Product Details

ISBN-13: 9780080538723
Publisher: Elsevier Science
Publication date: 02/08/1995
Series: Treatise on Materials Science and Technology
Sold by: Barnes & Noble
Format: eBook
Pages: 237
File size: 10 MB

Table of Contents

W.H. Rhodes, Phase Chemistry in the Development of Transparent Polycrystalline Oxides. J.J. Brown, Jr., The Use of Phase Diagrams to Predict Alkali Oxide Corrosion of Ceramics. W.B. Johnson and A.S. Nagelberg,Application of Phase Diagrams to the Production of Advanced Composites. T-Y. Tien, Use of Phase Diagrams in the Study of Silicon Nitride Ceramics. A.J. Pyzik and A.M. Hart, The Use of Phase Studies in the Development of Whiskers and Whisker-Reinforced Ceramics. Chapter References. Subject Index.
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