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Study of Melioration of Stainless Steel Surface by Phosphatisation with RE Additives and Mechanism

机译:稀土添加剂磷化改善不锈钢表面的研究及机理

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It was done to try to advance properties of stainless steel surface by phosphatization with rare earth (RE) additives. Comparing different additives showed that the order of their contribution to advancement of film corrosion resistance was NO2- > La3+ > MoO42- >> Ce3+ as well as that of its wear resistance was Ce3+ >> MoO42- > NO2- > La3 + , therefore, that of phosphating rate is MoO42- > Ce3 + >> NO2- > La3 + . Varieties in configuration and composition of the coating induced by REs were analyzed by SEM and EDS. And it was parsed that the IR phenomenon that RE appended made almost the absorption peak for PO43- in 1116 cm-1 a survival, which hints that the rate P/(P + H) increases along with corrosion resistance in the film. Furthermore, discussion about the mechanism of RE's intensifying the process made it clear that the RE is an excellent catalyst with the power for holding oxygen, which can markedly accelerate phosphate coating growing and develop the abrasive resistance and anticorrosive properties not only because of its effect of nucleation but because of that of cathode-depolarization.
机译:试图通过用稀土(RE)添加剂进行磷化来提高不锈钢表面的性能。比较不同的添加剂表明,它们对提高膜耐蚀性的贡献顺序为:NO2-> La3 +> MoO42- >> Ce3 +,而其耐磨性依次为Ce3 + >> MoO42-> NO2-> La3 +,因此,磷化速率为MoO42-> Ce3 + >> NO2-> La3 +。通过SEM和EDS分析了RE引起的涂层的构型和组成变化。并分析了RE附加的IR现象使得在1116 cm-1处的PO43-的吸收峰几乎得以维持,这表明膜中的P /(P + H)比率随耐蚀性的增加而增加。此外,关于RE强化过程机理的讨论清楚表明,RE是一种具有保持氧气能力的极好的催化剂,不仅因为其效果,而且可以显着加速磷酸盐涂层的生长并提高耐磨性和防腐性能。成核,但由于阴极去极化。

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