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An Investigation on the Effects of Phase Change Material on Material Components Used for High Temperature Thermal Energy Storage System

机译:相变材料对高温热能储存系统材料部件影响的研究

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The latent heat thermal energy storage (LHTES) systems for concentrated solar power (CSP) plants with advanced power cycle require high temperature phase change materials (PCMs), Graphite foams with high thermal conductivity to enhance the poor thermal conductivity of PCMs. Brazing of the graphite foams to the structural metals of the LHTES system could be a method to assemble the system and a method to protect the structural metals from the molten salts. In the present study, the LHTES prototype capsules using MgCl_2-graphite foam composites were assembled by brazing and welding, and tested to investigate the corrosion attack of the PCM salt on the BNi-4 braze. The microstructural analysis showed that the BNi-4 braze alloy can be used not only for the joining of structure alloy to graphite foams but also for the protecting of structure alloy from the corrosion by PCM.
机译:具有先进功率循环的集中太阳能(CSP)植物的潜热热储能(LHTES)系统需要高温相变材料(PCM),具有高导热率的石墨泡沫,以提高PCM的差的导热性差。将石墨泡沫钎焊到LHTES系统的结构金属可以是组装系统的方法和一种保护结构金属的方法,以保护结构金属免受熔盐。在本研究中,通过钎焊和焊接组装使用MgCl_2-石墨泡沫复合材料的LHTES原型胶囊,并测试了研究PCM盐对BNI-4钎焊的腐蚀侵蚀。微观结构分析表明,BNI-4钎焊合金不仅可以用于将结构合金连接到石墨泡沫,而且用于保护结构合金免受PCM腐蚀的影响。

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