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The Effect of Minor Elements on Corrosion Resistance of Carbon Steel for High Level Nucler Waste Disposal Container

机译:小元素对高水平核废物处理容器碳钢耐腐蚀性的影响

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Controlling the reduction of Fe_3O_4 film is an important factor to improve corrosion resistance of carbon steel for geological disposal of radioactive waste. In the present study, the effect of alloying elements on the reduction reaction of Fe_3O_4 film was examined using sputter-deposited complex oxide films and low alloy steels containing the alloying element. Fe_3O_4 films containing a small amount of another oxides were cathodically polarized in the simulated solution of bentonite-contacting water. It showed that the addition of Cr_2O_3, TiO_2, Al_2O_3 and MoO_2 to Fe_3O_4 is effective on the suppression of the reductive reaction. Fe_3O_4 films formed on the steels containing small amount of Cr, Ti, Al and Mo by alkaline solution treatment at high temperature also showed a high resistance against the reductive dissolution. The steels containing these alloying elements showed excellent corrosion resistances in the simulated solution of bentonite-contacting water.
机译:控制Fe_3O_4薄膜的减少是提高碳钢耐腐蚀性的放射性废物地质处置的重要因素。 在本研究中,使用溅射沉积的复合氧化物膜和含有合金元素的低合金钢来检查合金元素对Fe_3O_4膜还原反应的影响。 含有少量另一种氧化物的Fe_3O_4膜在膨润土接触水的模拟溶液中是阴极偏振。 它表明,添加CR_2O_3,TiO_2,AL_2O_3和MOO_2至FE_3O_4对抑制还原反应有效。 在高温下通过碱性溶液处理的含有少量Cr,Ti,Al和Mo的钢形成的Fe_3O_4薄膜也表现出对还原性溶解的高抗性。 含有这些合金元素的钢在膨润土接触水的模拟溶液中显示出优异的耐腐蚀性。

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