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Hot Corrosion Behavior of Ni-Base Superalloys in a Lithium Molten Salt

机译:镍基高温合金在锂熔盐中的热腐蚀行为

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The electrolytic reduction of a spent oxide fuel involves the liberation of the oxygen in a molten LiCl electrolyte, which is a chemically aggressive environment that is too corrosive for typical structural materials. Accordingly, it is essential to choose the optimum material for the process equipments such as the electroreducer and the salt purification vessel in the pyrochemical process. In this study, the corrosion behaviors of superalloys N-1, N-2 and N-3 in a molten LiCl-Li_2O salt under an oxidizing atmosphere were investigated at 650 deg C for 72 h to 216 h. Superalloy N-l showed the highest corrosion resistance among the examined alloys. The corrosion products of superalloys N-l and N-2 were NiO, Cr_2O_3, and NiCr_2O_4, while NiO, Cr_2O_3, LiAl_2Cr_3O_8 were identified as the corrosion products of superalloy N-3. For superalloy N-l, its outer corrosion layer was more continuous, dense and adherent compared to those of N-2 and N-3.
机译:废氧化物燃料的电解还原涉及在熔融的LiCl电解质中释放氧气,这是一种化学侵蚀性环境,对于典型的结构材料而言,腐蚀性太强。因此,必不可少的是为热化学过程中的诸如电解还原器和盐纯化容器之类的处理设备选择最佳材料。在这项研究中,研究了高温合金N-1,N-2和N-3在熔融LiCl-Li_2O盐中在氧化气氛下于650摄氏度下72h至216h的腐蚀行为。高温合金N-1在所检验的合金中显示出最高的耐腐蚀性。超级合金N-1和N-2的腐蚀产物为NiO,Cr_2O_3和NiCr_2O_4,而NiO,Cr_2O_3,LiAl_2Cr_3O_8被鉴定为超级合金N-3的腐蚀产物。对于高温合金N-1,与N-2和N-3相比,其外部腐蚀层更连续,更致密和更牢固。

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