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Titlebook: Advanced Materials for Severe Service Applications; K. Iida,A. J. McEvily Book 1987 Elsevier Applied Science Publishers Ltd 1987 advanced

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,Bildung und konjunktive Transaktionsräume,a major transition, from creep brittleness to creep ductility. The emphasis of the present article is on the definition of microstructures that provide ductility. For this purpose, the fundamental principles involved in high temperature flow and fracture are reviewed, and physical models of the duct
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https://doi.org/10.1007/978-3-663-08296-5 fracture elastically, fracture stress has a nonlinear relation to flaw size, and the critical stress intensity factor for a small crack is lower than that for a large crack. The relationship is explained well by a fracture model, which takes into account the interaction between a flaw and the micro
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https://doi.org/10.1007/978-3-663-08296-5d by the erosive action of particles in the gas stream. The principal forms of elevated temperature, gaseous-induced corrosion are briefly described and the effects of erosive conditions on these corrosion processes are examined. Procedures that can be used to attempt to inhibit such degradation pro
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Bildung zwischen Staat und Marktrtional loadings in high-temperature low-cycle fatigue. Another problem which will be discussed is the study of crack opening displacement as a parameter for correlating fatigue data in biaxial stress states at high temperatures.
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Wie standardisierbar ist Bildung?,he design temperatures for the various nuclear reactors, it was expected that various new material behaviors may be encountered. These phenomena should be considered in the design of the high-temperature components of the HTR..During the development of the helium heat exchanger for the HTR direct st
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„Bildung“ — eine deutsche Utopiee a subject of the utmost concern to power companies and plant manufacturers. The requirement imposed upon these components is that they can serve longer than originally expected, in spite of their frequent starts and stops. Accordingly materials from which these components are made must be capable
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Orte und Netze lebenslangen Lernensuperconducting technology which requires highly reliable structural materials. The candidate materials are nonmagnetic high strength austenitic steels and titanium alloys of which the mechanical properties, i.e. strength, toughness, fatigue and creep are strongly affected by composition and microstr
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