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Titlebook: Advanced Topics in Materials Science and Engineering; J. L. Morán-López,J. M. Sanchez Book 1993 Springer Science+Business Media New York 1

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https://doi.org/10.1007/978-1-4615-2842-5Metall; advanced materials; alloy; ceramics; composite; development; fatigue; materials science; thin film; t
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978-1-4613-6230-2Springer Science+Business Media New York 1993
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Kalevi Kull,Ekaterina Velmezovaaircraft and aerospace systems. In order to meet the demands imposed by both military and commercial end users, the development and commercialization of advanced high temperature structural materials must anticipate the future requirements of advanced propulsion technology. To date, nickel and iron-
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Verbal Patterns: Taming Cognitive Biologythe mechanical strength at a temperature close to 0.5 T. (K) . At this temperature the deformation of such materials can reach more than 2000% in a tension test without the observation of necking. The transformation of the phenomenon into a manufacturing technique has been pushed ahead over the last
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Kalevi Kull,Ekaterina Velmezovast-effective manner. This in turn will require materials with enhanced mechanical property characteristics compared to current state-of-the-art materials. The mission scenarios of the future air and space systems will be briefly reviewed followed by a general consideration of the materials of constr
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Introduction: Biosemiotics and Evolution,al composites resulted in the reemergence of textile structural composites in the 1980’s as a new class of advanced composites. After a review of the worldwide activities in textile structural composites, the role of fiber architecture in the manufacturing of tough, net shape composites will be disc
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