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Books by Keyword: Zirconium Diboride
Books
Edited by:
Yiwang Bao, Danyu Jiang and Jianghong Gong
Online since: March 2013
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
The focus of this special collection was set on materials properties and testing techniques, it covers most aspects of testing techniques on mechanical, chemical, physical properties and microstructures of ceramics, glass and concrete. It is hoped the collection will promoted the research and development in the field of testing and evaluation of inorganic materials.
The focus of this special collection was set on materials properties and testing techniques, it covers most aspects of testing techniques on mechanical, chemical, physical properties and microstructures of ceramics, glass and concrete. It is hoped the collection will promoted the research and development in the field of testing and evaluation of inorganic materials.
Edited by:
Yashwant Mahajan & J. A. Sekhar
Online since: October 2008
Description: Volume is indexed by Thomson Reuters BCI (WoS).
Advanced high-temperature materials are key players in the emerging new technologies which are pushing forward the structural-aerospace, propulsion-system, defense, nuclear, thermal and chemical industries. Accelerating efforts have been directed towards increasing the operating-temperature limits of existing material systems and developing new material compositions such as advanced ceramics, UHTCs, intermetallics and CMCs. Understanding and controlling the behavior of the microstructures and properties of such materials have become key elements in these research activities. Since processing may itself engender various unique microstructural configurations and properties, the routes taken when obtaining optimum structures are also of primordial importance.
Advanced high-temperature materials are key players in the emerging new technologies which are pushing forward the structural-aerospace, propulsion-system, defense, nuclear, thermal and chemical industries. Accelerating efforts have been directed towards increasing the operating-temperature limits of existing material systems and developing new material compositions such as advanced ceramics, UHTCs, intermetallics and CMCs. Understanding and controlling the behavior of the microstructures and properties of such materials have become key elements in these research activities. Since processing may itself engender various unique microstructural configurations and properties, the routes taken when obtaining optimum structures are also of primordial importance.
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