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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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MHD Systemsy cost lower than that of competitive systems. Low NO. and SO. emission levels are obtained. The development program in the world will be described briefly, problem areas identified and recommendations for new development given.
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Conference proceedings 1984ics aspects of ceramics, as candidates materials in advanced energy conversion systems. The technical programme included the presentation of 22 invited papers. The Colloquium was concluded by a panel discussion which was preceeded by a presentation on the Ceramic Fabrication. For convenience, papers
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Institutionalisierte Informalitätart reports of several joining techniques which are applicable. They are classified in three groups: mechanical joining, brazing with application of intermediate layers and welding with or without forming of a liquid phase. Application of these methods will be shown in the area of ceramics based on alumina, silicon nitride and silicon carbide.
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Joining of Ceramics for High Temperature Applicationsart reports of several joining techniques which are applicable. They are classified in three groups: mechanical joining, brazing with application of intermediate layers and welding with or without forming of a liquid phase. Application of these methods will be shown in the area of ceramics based on alumina, silicon nitride and silicon carbide.
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Ceramics for Future Automotive Power Plantshe various applications. Further improvement of the ceramic materials and component fabrication technologies with respect to less variation of strength properties and to longer time thermal stability will be necessary.
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Cracking Resistance of Alumina-Based Polyphase CeramicsO.-mullite, 1 sintered product Al.O.-SiC, 1 molten-cast product Al.O.-ZrO.-SiO.. The cracking tests were conducted under 4-point bending on SENB* specimens of 230 × 50 × 12,5 mm. with a notch depth of 13 mm. The appearance of the first cracks and the evolution of cracking during the test were follow
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Mechanical Properties and Engineering Design with Ceramicsis the theme of this paper. Ideally one would wish to perform a standard set of mechanical property measurements, and through various computational procedures predict the lifetime of a component subjected to realistic regimes of stress, temperature and environment. In principle, it is possible to do
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Engineering of Refractory Structuresns and those that are prescribed in National Standards — traditionally used for measuring engineering data — shows clear differences. The influence of these differences are studied in simulative experiments on two of the most important properties, thermal expansion and modulus of elasticity. A theor
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