高温材料:性能、要求及应用

M. Šimic, A. Alil, Sanja Martinović, M. Vlahović, A. Savić, T. Volkov-Husović
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引用次数: 5

摘要

高温材料用于广泛的工业和应用,如飞机的燃气涡轮发动机,电力和核电站,不同类型的熔炉,包括高炉,一些燃料电池,工业燃气轮机,不同类型的反应堆,发动机,电子和照明设备,以及许多其他。对高温材料的需求每年都变得越来越具有挑战性。为了高效、有效地工作,同时在经济上可行,在高温下使用的材料必须具有在这种极端条件下特别适用的某些特性,例如强度和耐热性。本文将讨论高温材料应满足的一些重要要求。此外,重点放在耐火混凝土、陶瓷、金属间合金和复合材料作为这些材料的四种不同类别上,这些材料也被认为是克服当前一些挑战的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High temperature materials: properties, demands and applications
High-temperature materials are used in a wide range of industries and applications such as gas turbine engines for aircrafts, power and nuclear power plants, different types of furnaces, including blast furnaces, some fuel cells, industrial gas turbines, different types of reactors, engines, electronic and lighting devices, and many others. Demands for high-temperature materials are becoming more and more challenging every year. To perform efficiently, effectively and at the same time to be economically viable, the materials used at high temperatures must have certain characteristics that are particularly expected for applying under such extreme conditions, for example, the strength and thermal resistance. In the present review, some important requirements that should be satisfied by high temperature materials will be discussed. Furthermore, the focus is put on refractory concretes, ceramics, intermetallic alloys, and composites as four different categories of these materials, which are also considered in respect to possibilities to overcome some of the current challenges.
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