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DFT study on the mechanism of inclusion-induced initial pitting corrosion of Al-Ti-Ca complex deoxidized steel with Ce treatment

机译:用Ce处理掺杂型掺杂脱氧钢的包涵初始蚀腐蚀机理的DFT研究

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摘要

The mechanism of inclusion-induced initial pitting corrosion of Al-Ti-Ca complex deoxidized steel with Ce treatment was studied by the experimental investigation and theoretical calculation. To figure out which phases of complex inclusion containing different components induced initial pitting corrosion, the scanning electron microscope (SEM) analysis, the continuous immersion experiments and density functional theory (DFT) calculation were conducted. Two types of inclusions and different pit morphologies were observed. The pit initially occurred at the sulfide inclusions (MnS and Ce2O2S) rather than the steel matrix due to the lower the electronic work function (EWF) of this compound compare to the steel matrix and other phases. In addition, the Ce-rich inclusion possessed the higher pitting corrosion resistance than the same type of inclusions. Finally, a schematic diagram was established to explain the mechanism of the different inclusions in initiating and proceeding pitting corrosion.
机译:通过实验研究和理论计算研究了含有Al-Ti-Ca络合物脱氧钢的掺杂初始腐蚀的机理。为了弄清楚包含不同组分的复杂包合物的相位诱导初始点蚀腐蚀,进行扫描电子显微镜(SEM)分析,连续浸渍实验和密度泛函理论(DFT)计算。观察到两种类型的夹杂物和不同的坑形态。由于该化合物的电子功函数(EWF)与钢基质和其他相,最初在硫化物夹杂物(MNS和Ce2O2s)上而不是钢基质发生的凹坑。此外,CE的CE含有比相同类型的夹杂物具有较高的蚀腐蚀性。最后,建立了示意图,以解释在启动和进行点腐蚀时不同夹杂物的机制。

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