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Selection of high temperature materials for concentrated solar power systems: Property maps and experiments

机译:集中太阳能发电系统高温材料的选择:特性图和实验

摘要

© 2014 Elsevier Ltd. Concentrated solar power systems are receiving increasing attention as electricity generating systems, whereby the sun's heat is focused onto a receiver heated to high temperatures. Systems operating today are generally limited to temperatures below about 600. °C, but there is considerable interest in increasing operating temperatures, with heat receivers generally constructed using refractory metallic alloys or ceramics. The present study compares the behaviour of a range of metallic or ceramic materials with advanced intermetallic alloys which have been developed for high-temperature aeronautic or power-generating systems. A few experiments are reported using intense solar heating to demonstrate the damage that may be sustained, depending on the material that is considered. Accelerated cyclic oxidation experiments further emphasize the sensitivity of the various materials to oxidation and thermal damage accumulation. The important characteristics required of the material to be used for the receiver are described and used to generate property maps where the suitability of different classes of materials (metal, intermetallic, ceramic) may be compared. Depending on the precise conditions of where the receiver will operate, and whether creep, fracture or oxidation/spalling is the most important damaging process, either refractory Ni-base alloys, Mo-silicides, or ceramics may be the best material for the application.
机译:©2014 Elsevier Ltd.。随着太阳能发电系统的发展,集中式太阳能发电系统受到越来越多的关注,其中太阳的热量集中在加热到高温的接收器上。当今运行的系统通常限制在低于约600°C的温度下,但是人们对提高运行温度颇有兴趣,受热器通常使用难熔金属合金或陶瓷制成。本研究比较了一系列金属或陶瓷材料与先进的金属间合金的性能,这些合金已为高温航空或发电系统开发。据报道,一些实验使用强烈的太阳加热来证明可能遭受的损害,这取决于所考虑的材料。加速的循环氧化实验进一步强调了各种材料对氧化和热损伤积累的敏感性。描述了用于接收器的材料所需的重要特性,并将其用于生成特性图,在此可以比较不同种类的材料(金属,金属间化合物,陶瓷)的适用性。根据接收器工作的精确条件以及蠕变,断裂或氧化/剥落是最重要的破坏过程,难熔的镍基合金,钼硅化物或陶瓷可能是应用的最佳材料。

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