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Effects of Cerium on the Inclusions and Pitting Corrosion Behavior of 434 Ferritic Stainless Steel

机译:铈对434铁素体不锈钢夹杂物和点蚀行为的影响

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The effects of Ce addition on the inclusions and the pitting corrosion behavior of ferritic stainless steel were investigated. The results showed that Ce_(2)O_(3)·SiO_(2) and Ce_(2)O_(2)S inclusions were mainly found in 434 ferritic stainless steel containing 0.011% or 0.023 wt% Ce, which is the most appropriate addition of Ce that could contribute to produce the dispersive and fine rare earth inclusions. According to the thermodynamic analysis, Ce inclusions could be produced by rare earth elements combining with oxygen, sulfur, or preexisting SiO_(2). While the kinetic analysis and mechanism for formation of inclusions suggested that the area ratio of the pure SiO_(2) inclusion decreased with Ce increasing, and the difference of [Ce] concentration between the original inclusion interface and the SiO_(2) solid unreacted nuclear interface is the main reason to cause the different process of inclusion modification. Meanwhile, when the content of Ce was 0.011% or 0.023%, the resistance to pitting corrosion increased with the interface areas between the inclusions and the steel matrix decreasing. However, the excessive Ce addition resulted in the increase of size and quantity of inclusions, which would reduce the resistance to pitting corrosion.
机译:研究了铈的添加对铁素体不锈钢夹杂物和点腐蚀行为的影响。结果表明,Ce_(2)O_(3)·SiO_(2)和Ce_(2)O_(2)S夹杂物主要存在于434含0.011%或0.023 wt%Ce的铁素体不锈钢中,这是最合适的。铈的添加可能有助于产生分散的和精细的稀土夹杂物。根据热力学分析,稀土元素与氧,硫或预先存在的SiO_(2)结合可以生成Ce夹杂物。动力学分析和夹杂物形成机理表明,纯SiO_(2)夹杂物的面积比随Ce的增加而减小,原始夹杂物界面与未反应的SiO_(2)固体核之间的[Ce]浓度差异。界面是导致夹杂物修改过程不同的主要原因。同时,当Ce的含量为0.011%或0.023%时,随着夹杂物与钢基质之间的界面面积的减小,耐点蚀性增加。然而,过量的铈的添加导致夹杂物的尺寸和数量的增加,这将降低抗点蚀的能力。

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