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Titlebook: Carbide, Nitride and Boride Materials Synthesis and Processing; Alan W. Weimer (Professor of Chemical Engineering) Book 1997 Chapman & Hal

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书目名称Carbide, Nitride and Boride Materials Synthesis and Processing
编辑Alan W. Weimer (Professor of Chemical Engineering)
视频video
图书封面Titlebook: Carbide, Nitride and Boride Materials Synthesis and Processing;  Alan W. Weimer (Professor of Chemical Engineering) Book 1997 Chapman & Hal
描述Carbide, Nitride and Boride Materials Synthesis and Processingis a major reference text addressing methods for the synthesis ofnon-oxides. Each chapter has been written by an expert practising inthe subject area, affiliated with industry, academia or governmentresearch, thus providing a broad perspective of information for thereader. The subject matter ranges from materials properties andapplications to methods of synthesis including pre- andpost-synthesis processing. Although most of the text is concernedwith the synthesis of powders, chapters are included for othermaterials such as whiskers, platelets, fibres and coatings. Carbide,Nitride and Boride Materials Synthesis and Processing is acomprehensive overview of the subject and is suitable forpractitioners in the industry as well as those looking for anintroduction to the field. It will be of interest to chemical,mechanical and ceramic engineers, materials scientists and chemistsin both university and industrial environments working on or withrefractory carbides, nitrides and borides.
出版日期Book 1997
关键词ceramics; kinetics; materials properties; refractories
版次1
doihttps://doi.org/10.1007/978-94-009-0071-4
isbn_softcover978-94-010-6521-4
isbn_ebook978-94-009-0071-4
copyrightChapman & Hall 1997
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Developmental Noise and Stabilityto produce the nitride materials. In all cases, the reactions are highly endothermic, have carbon monoxide (CO) as a reaction by-product and are thermodynamically favorable at only very high temperatures.
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J. Yang,D. J. Thompson,Y. Takanohigh activation energy and must also generate a sufficient amount of heat. Synthesis of refractory high-temperature materials (e.g. borides, carbides, nitrides and silicides) from elemental constituents exhibits both of the characteristics mentioned above.
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