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The Mechanism of Intragranular Acicular Ferrite Nucleation Induced by Mg-Al-O Inclusions

机译:Mg-Al-O夹杂物诱导的腔内针状铁氧体成核的机制

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摘要

The features of inclusion and microstructure for carbon structural steel containing Mg-Al-O inclusions were studied through the scanning electron microscope (SEM) and Energy Dispersive Spectrometer (EDS). It can be seen that, in Mg-Al-O inclusions, the elements of Mn, Si, and S coexist, and their central mole ratio of Mg/Al varies in a wide range. This value for most inclusions is larger than 0.5, which suggests the formation of solid solution between MgAl2O4 and MgO. After etching, the typical microstructure of intragranular acicular ferrites is observed, which is due to the nucleation effect induced by Mg-Al-O inclusions. From the SEM-EDS mapping images, it is found that the element of sulfur accumulates on the periphery of nucleation inclusion. Moreover, line EDS analysis hints that Mn-depletion zone (MDZ) exists in steel matrix, which is adjacent to the complex inclusion. Combined with the theoretical analysis, this phenomenon can be explained by the absorption of Mn due to the magnesium vacancy in MgAl2O4, and this MDZ promotes the nucleation of intragranular acicular ferrite. Through statistical analysis of SEM images for microstructure, the probabilistic nature of inducing nucleation effect is revealed. These results may be helpful to clarify the nature of oxide metallurgy.
机译:通过扫描电子显微镜(SEM)和能量分散光谱仪(EDS)研究含有Mg-Al-O夹杂物的碳结构钢的包含和微观结构的特征。可以看出,在Mg-Al-O夹杂物中,Mn,Si和s的共存元素和它们的Mg / Al的中央摩尔比在宽范围内变化。大多数夹杂物的该值大于0.5,这表明在MgAl2O4和MgO之间形成固溶体。在蚀刻之后,观察到腔内针状铁氧体的典型微观结构,这是由于Mg-Al-O夹杂物诱导的成核效果。从SEM-EDS映射图像中,发现硫的元素积累在成核包裹物的周边上。此外,线EDS分析暗示钢基质中存在Mn-Flepletion区(MDZ),其与复合物夹杂物相邻。结合理论分析,这种现象可以通过MgAl 2 O 4中的镁空位吸收,并且该MDZ促进腔内针状铁氧体的核心。通过SEM图像进行微观结构的统计分析,揭示了诱导成核效果的概率性质。这些结果可能有助于澄清氧化冶金的性质。

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