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Titlebook: Designing with Structural Ceramics; R. W. Davidge (Consultant to the Commission of the Book 1991 ECSC, EEC, EAEC, Brussels and Luxembourg

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書(shū)目名稱(chēng)Designing with Structural Ceramics
編輯R. W. Davidge (Consultant to the Commission of the
視頻videohttp://file.papertrans.cn/270/269066/269066.mp4
圖書(shū)封面Titlebook: Designing with Structural Ceramics;  R. W. Davidge (Consultant to the Commission of the Book 1991 ECSC, EEC, EAEC, Brussels and Luxembourg
描述The last 30 years have seen a steady development in the range of ceramic materials with potential for high temperature engineering applications: in the 60s, self-bonded silicon carbide and reaction-bonded silicon nitride; in the 70s, improved aluminas, sintered silicon carbide and silicon nitrides (including sialons); in the 80s, various toughened Zr0 materials, ceramic matrix composites reinforced with silicon 2 carbide continuous fibres or whiskers. Design methodologies were evolved in the 70s, incorporating the principles of fracture mechanics and the statistical variation and time dependence of strength. These have been used successfully to predict the engineering behaviour of ceramics in the lower range of temperature. In spite of the above, and the underlying thermodynamic arguments for operations at higher temperatures, there has been a disappointing uptake of these materials in industry for high temperature usc. Most of the successful applications are for low to moderate temperatures such as seals and bearings, and metal cutting and shaping. The reasons have been very well documented and include: ? Poor predictability and reliability at high temperature. ? High costs relati
出版日期Book 1991
關(guān)鍵詞cement; ceramics; composite; composite materials; mechanical properties
版次1
doihttps://doi.org/10.1007/978-94-011-3678-5
isbn_ebook978-94-011-3678-5
copyrightECSC, EEC, EAEC, Brussels and Luxembourg 1991
The information of publication is updating

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https://doi.org/10.1007/978-3-322-82362-5 determining creep under oxidation. In dense sintered silicon nitride the presence or absence of viscous glassy phases is the main factor controlling behaviour. Silicon carbide ceramics show relatively low creep rates and are not so sensitive to oxidation effects.
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https://doi.org/10.1007/978-3-322-82362-5and emerging industrial applications are used as illustrations. There are needs for improved, more-refractory brazes for high temperature thermo-mechanical uses, and also for better understanding of the stresses near the joint and how these relate to appropriate material properties.
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Gabler Kompakt-Lexikon eBusinessulties in assuring high levels of quality and reliability, and high costs, will act as severe obstacles to the large scale use of ceramics in automotive engineering. Market penetration will thus be gradual and long term.
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Gabler Kompakt-Lexikon eBusinesswith high potential are worth mentioning: porous ceramics for advanced catalytic processes; ceramic membranes for liquid and gas separation; porous ceramic (and non-ceramic) materials for molten carbonate fuel cells; and ceramic foams. Membranes and foams are discussed here in detail.
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