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Materials for High Temperature Engineering Applications (Hardcover, 2000 ed.): G.W. Meetham, M.H.Van De Voorde Materials for High Temperature Engineering Applications (Hardcover, 2000 ed.)
G.W. Meetham, M.H.Van De Voorde
R1,619 Discovery Miles 16 190 Ships in 10 - 15 working days

This concise survey describes the requirements on materials operating in high-temperature environments and the processes increasing temperature capability of metals, ceramics, and composites. The major part deals with the applicable materials and their specific properties. One chapter is devoted to coatings. The book is written for engineering and science students, researchers, and managers in industries.

Designing with Structural Ceramics (Hardcover, 1991 ed.): R. W Davidge, M.H.Van De Voorde Designing with Structural Ceramics (Hardcover, 1991 ed.)
R. W Davidge, M.H.Van De Voorde
R1,589 Discovery Miles 15 890 Ships in 10 - 15 working days

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 relative to competing materials. * Variable reproducibility of manufacturing processes. * Lack of sufficiently sensitive non-destructive techniques. With this as background, a Europhysics Industrial Workshop sponsored by the European Physical Society (EPS) was organised by the Netherlands Energy Research Foundation (ECN) and the Institute for Advanced Materials of the Joint Research Centre (JRC) of the EC, at Petten, North Holland, in April 1990 to consider the status of thermomechanical applications of engineering ceramics.

Materials for High Temperature Engineering Applications (Paperback, Softcover reprint of the original 1st ed. 2000): G.W.... Materials for High Temperature Engineering Applications (Paperback, Softcover reprint of the original 1st ed. 2000)
G.W. Meetham, M.H.Van De Voorde
R1,487 Discovery Miles 14 870 Ships in 10 - 15 working days

This concise survey describes the requirements on materials operating in high-temperature environments and the processes that increase the temperature capability of metals, ceramics, and composites. The major part deals with the applicable materials and their specific properties, with one entire chapter devoted to coatings. Written for engineering and science students, researchers, and managers in industry.

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