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Polarization Corrosion of the Iron-Nickel Alloy in Na{sub}3AlF{sub}6-Based System Molten Salts

机译:Na {Sub} {Sub} 6系熔盐中铁镍合金的偏振腐蚀

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Fe-Ni (with different wt.%) alloys were prepared by powder metallurgy process and used as anode for aluminum electrolysis. Electrolysis polarization of these anodes was conducted for 12 hours at 850°C in a Na3AlF6-based molten salt. The anodic current density was 0.75A/cm{sup}2. At the initial stage, the corrosion rate decreased with increasing ratio of Fe to Ni in the alloy, when the ratio of Fe to Ni was 1.42, the lowest value of the corrosion rate with 21mm/a was obtained. Then corrosion rate increased with increasing ratio of Fe to Ni. The analysis of Electron Probe Micro-analyzer and X-Ray Diffraction showed that the film formed on the anodic surface consisted of iron oxide as outer layer, and nickel oxide and nickel ferrite spinel as inner layer. The metal anode presented good performance in terms of anti-oxidation and corrosion resistance, and the purity of the produced aluminum was 98%.
机译:通过粉末冶金工艺制备Fe-Ni(具有不同的重量%)合金并用作铝电解的阳极。这些阳极的电解极化在850℃下在Na3AlF6的熔融盐中进行12小时。阳极电流密度为0.75A / cm {SUP} 2。在初始阶段,当合金中的Fe与Ni的Fe与Ni的比率增加,腐蚀速率降低,当Fe至Ni的比率为1.42时,获得了21mm / a的腐蚀速率的最低值。然后腐蚀速率随着Fe与Ni的比率增加而增加。电子探针微分析仪和X射线衍射的分析表明,在阳极表面上形成的膜由氧化铁作为外层和氧化镍和镍铁素体尖晶石作为内层组成。金属阳极在抗氧化和耐腐蚀性方面呈现出良好的性能,并且所生产的铝的纯度为98%。

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