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Protective coatings for high temperature molten salt heat storage systems in solar concentration power plants

机译:太阳能集中电厂的高温熔盐储热系统保护涂层

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Three Cr ferritic/martensitic containing-steels (P91, VM12 and MarBN) and one carbon steel (A516) were exposed to a mixture of molten nitrates salt (Solar Salt) at 580°C. P91 and MarBN were also exposed to a newly developed ternary carbonate eutectic salt mixture at 650°C under static conditions. In contact with molten nitrates, the uncoated substrates developed a complex, fast growing multilayered oxide scale, which includes NaFeO_2. Significant spallation took place for all substrates. However, A516 exhibited lower corrosion rates and developed a more compact Fe_2O_3/Fe_3O_4 slower growing scale. Substrate nitriding occurred on the ferritic steels. On molten carbonates at 650°C the uncoated steels also corroded heavily and the formed oxide contained LiFeO_2. Cr was found in the salts exposed to the Cr containing uncoated steels, which likely implies chromate dissolution in the melts as a result of a basic fluxing mechanism, typical of molten salt corrosion. Al slurry coated samples were also tested by immersion in both salts. All the tested coated samples performed well as no evidence of significant weight variation or substrate attack could be observed. The protective nature of these coatings may be attributed to the formation of NaAlO_2. Some coating-substrate interdiffusion occurred, to a higher extent on aluminized A516. The Al richest phases (FeAl_3, Fe_2Al_5) transformed into the lower Al containing phase FeAl.
机译:将三个Cr铁素体/马氏体含有钢(P91,VM12和MARBN)和一个碳钢(A516)暴露于580℃下熔融硝酸盐盐(太阳盐)的混合物。在静态条件下,P91和MARBN在650℃下也暴露于新开发的三元碳酸共晶盐混合物。在与熔融硝酸盐接触的情况下,未涂覆的基材形成复杂,快速生长的多层氧化物刻度,其包括Nafeo_2。所有基材都发生了显着的椎间板。然而,A516表现出较低的腐蚀速率并开发出更紧凑的Fe_2O_3 / Fe_3O_4较慢的生长尺度。在铁素体钢上发生氮化。在650℃下熔融碳酸盐,未涂层的钢也腐蚀,并且形成的氧化物含有Lifo_2。在暴露于含有未涂层钢的Cr的盐中发现Cr,这可能意味着由于碱性熔融腐蚀的碱性助熔机构而言,这可能意味着熔化中的铬酸盐溶解。还通过浸入两种盐中来测试Al浆料涂覆的样品。可以观察到所有测试的涂覆样品良好,也不能被观察到显着的重量变化或底物攻击的证据。这些涂层的保护性质可能归因于NaAlO_2的形成。发生一些涂层基板的相互扩散,在铝化A516的程度上更高。将最富有的阶段(FEAL_3,FE_2AL_5)转化为含有相位的下部Al。

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