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Ultra-High Temperature Ceramics - by William G Fahrenholtz & Eric J Wuchina & William E Lee & Yanchun Zhou (Hardcover)

Ultra-High Temperature Ceramics - by  William G Fahrenholtz & Eric J Wuchina & William E Lee & Yanchun Zhou (Hardcover) - 1 of 1
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About this item

Highlights

  • The first comprehensive book to focus on ultra-high temperature ceramic materials in more than 20 years Ultra-High Temperature Ceramics are a family of compounds that display an unusual combination of properties, including extremely high melting temperatures (>3000°C), high hardness, and good chemical stability and strength at high temperatures.
  • About the Author: William G. Fahrenholtz, PhD, is Professor of Ceramic Engineering in the Department of Materials Science and Engineering at the Missouri University of Science and Technology.
  • 464 Pages
  • Technology, Mechanical

Description



About the Book



"This book will capture historic aspects and recent progress on the research and development of ultra-high temperature ceramics. This will be the first comprehensive book focused on this class of materials in more than 20 years. The book will review historic studies and recent progress in the field. The intent is to provide a broad overview and critical analysis rather than focus on the latest scientific results. The content will include synthesis, powder processing, densification, property measurement, and characterization of boride and carbide ceramics. Emphasis will be on materials for hypersonic aerospace applications such as wing leading edges and propulsion components for vehicles traveling faster than Mach 5, but will also include materials used in the extreme environments associated with high speed cutting tools and nuclear power generation"--



Book Synopsis



The first comprehensive book to focus on ultra-high temperature ceramic materials in more than 20 years

Ultra-High Temperature Ceramics are a family of compounds that display an unusual combination of properties, including extremely high melting temperatures (>3000°C), high hardness, and good chemical stability and strength at high temperatures. Typical UHTC materials are the carbides, nitrides, and borides of transition metals, but the Group IV compounds (Ti, Zr, Hf) plus TaC are generally considered to be the main focus of research due to the superior melting temperatures and stable high-melting temperature oxide that forms in situ. Rather than focusing on the latest scientific results, Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications broadly and critically combines the historical aspects and the state-of-the-art on the processing, densification, properties, and performance of boride and carbide ceramics.

In reviewing the historic studies and recent progress in the field, Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications provides:

  • Original reviews of research conducted in the 1960s and 70s
  • Content on electronic structure, synthesis, powder processing, densification, property measurement, and characterization of boride and carbide ceramics.
  • Emphasis on materials for hypersonic aerospace applications such as wing leading edges and propulsion components for vehicles traveling faster than Mach 5
  • Information on materials used in the extreme environments associated with high speed cutting tools and nuclear power generation

Contributions are based on presentations by leading research groups at the conference "Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications II" held May 13-19, 2012 in Hernstein, Austria. Bringing together disparate researchers from academia, government, and industry in a singular forum, the meeting cultivated didactic discussions and efforts between bench researchers, designers and engineers in assaying results in a broader context and moving the technology forward toward near- and long-term use. This book is useful for furnace manufacturers, aerospace manufacturers that may be pursuing hypersonic technology, researchers studying any aspect of boride and carbide ceramics, and practitioners of high-temperature structural ceramics.



From the Back Cover



The first comprehensive book to focus on ultra-high temperature ceramic materials in more than 20 years

Ultra-High Temperature Ceramics are a family of compounds that display an unusual combination of properties, including extremely high melting temperatures (>3000°C), high hardness, and good chemical stability and strength at high temperatures. Typical UHTC materials are the carbides, nitrides, and borides of transition metals, but the Group IV compounds (Ti, Zr, Hf) plus TaC are generally considered to be the main focus of research due to the superior melting temperatures and stable high-melting temperature oxide that forms in situ. Rather than focusing on the latest scientific results, Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications broadly and critically combines the historical aspects and the state-of-the-art on the processing, densification, properties, and performance of boride and carbide ceramics.

In reviewing the historic studies and recent progress in the field, Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications provides:

- Original reviews of research conducted in the 1960s and 70s

- Content on electronic structure, synthesis, powder processing, densification, property measurement, and characterization of boride and carbide ceramics.

- Emphasis on materials for hypersonic aerospace applications such as wing leading edges and propulsion components for vehicles traveling faster than Mach 5

- Information on materials used in the extreme environments associated with high speed cutting tools and nuclear power generation

Contributions are based on presentations by leading research groups at the conference "Ultra-High Temperature Ceramics: Materials for Extreme Environment Applications II" held May 13-19, 2012 in Hernstein, Austria. Bringing together disparate researchers from academia, government, and industry in a singular forum, the meeting cultivated didactic discussions and efforts between bench researchers, designers and engineers in assaying results in a broader context and moving the technology forward toward near- and long-term use. This book is useful for furnace manufacturers, aerospace manufacturers that may be pursuing hypersonic technology, researchers studying any aspect of boride and carbide ceramics, and practitioners of high-temperature structural ceramics.



About the Author



William G. Fahrenholtz, PhD, is Professor of Ceramic Engineering in the Department of Materials Science and Engineering at the Missouri University of Science and Technology. He has authored or co-authored more than 100 publications in peer-reviewed journals and holds four U.S. patents.

Eric J. Wuchina, PhD, is currently a Senior Materials Research Engineer at the Naval Surface Warfare Center, Carderock Division and program officer in the Office of Naval Research with responsibility for ultra-high temperature materials. He has authored over 25 publications, 80 presentations (12 invited) and 4 patents.

Bill Lee, DPhil, is Professor of Ceramics, founding Director of the Centre for Advanced Structural Ceramics (CASC) and Director of the Centre for Nuclear Engineering at Imperial College London. He has over 350 publications, including 4 books for which he is lead or co-author, and has supervised 52 students to PhD completion.

Yanchun Zhou, PhD, is Deputy Director of advanced composite laboratory Aerospace Research Institute of Materials and Processing Technology. Dr. Zhou has authored or co-authored more than 300 publications in peer-reviewed journals, and holds 36 China patents.

Dimensions (Overall): 9.4 Inches (H) x 6.7 Inches (W) x 1.2 Inches (D)
Weight: 2.38 Pounds
Suggested Age: 22 Years and Up
Number of Pages: 464
Genre: Technology
Sub-Genre: Mechanical
Publisher: Wiley-American Ceramic Society
Format: Hardcover
Author: William G Fahrenholtz & Eric J Wuchina & William E Lee & Yanchun Zhou
Language: English
Street Date: November 3, 2014
TCIN: 94488373
UPC: 9781118700785
Item Number (DPCI): 247-06-4145
Origin: Made in the USA or Imported
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Shipping details

Estimated ship dimensions: 1.2 inches length x 6.7 inches width x 9.4 inches height
Estimated ship weight: 2.38 pounds
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