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Titlebook: Ceramics in Advanced Energy Technologies; Proceedings of the E H. Kröckel,M. Merz,O. Biest Conference proceedings 1984 ECSC, EEC, EAEC, Bru

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Recuperative Ceramic Heat Exchangerengines as well is described. The technology used includes tape casting, punching, lamination and embossing as well. Heat exchanger (HX) areas up to 2500 m./m. can be fabricated. Materials and heat exchanger (HX) data will be given and selected applications will be discussed.
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SisiC — A Material for High Temperature Ceramic Heat Exchangerschangers. In the R&D-project GAST, SiSiC-tubes are used to construct a receiver (= heat exchanger) to heat air by solar radiation. The state of the art and the objectives for further developments are presented in a discussion of SiSiC-components, joining techniques, mechanical fatigue behaviour of S
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MHD Systemscycle. The potential offered by MHD has been demonstrated by studies showing coal-to-busbar conversion efficiencies approaching 50% with an electricity cost lower than that of competitive systems. Low NO. and SO. emission levels are obtained. The development program in the world will be described br
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Non Oxide Ceramics (Silicon Carbide, Silicon Nitride, Sialon)der preparation, different ceramic forming methods, sintering and machining have also been experienced and have advanced to a relatively high level, it is now possible to produce even complicated shapes in satisfactory homogeneity with a high degree of performance ability. All this needs further imp
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