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Nucleation of Acicular Ferrite on Sulfide Inclusion during Rapid Solidification of Low Carbon Steel

机译:低碳钢快速凝固过程中针状铁素体在硫化物夹杂中的形核

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摘要

A fine-grained microstructure yields the optimum combination of strength and toughness of steel. Refinement of the ferrite microstructure by formation of fine intra-granular acicular ferrite nucleated on inclusion has been caused wide interesting in weld metallurgy and other metallurgy fields. It is also important to refine the as-cast microstructure during strip casting and thin slab casting process in which the possibility of refining microstructure by rolling technology decreases. In present paper, the possibility to nucleate intra-granular acicular ferrite by sulfide inclusion in steel without special alloy elements during rapid solidification process has been investigated by optical microscopy, Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM). The orientation of the acicular ferrite clusters are also investigated by Electron BackScattered Diffraction (EBSD) analysis. Oxide inclusion and sulfide inclusion are popular in the sample and only sulfide inclusions are observed effective to assistant acicular ferrite nucleation. The possible mechanisms of formation of acicular ferrite in present sample, those are manganese depleted zone and phosphorus rich zone around inclusion in matrix, are discussed in detail.
机译:细晶粒的组织可产生钢的强度和韧性的最佳组合。在焊接冶金和其他冶金领域引起广泛关注的是,细小晶粒内针状铁素体在夹杂物中形核,从而形成铁素体显微组织。在带钢铸造和薄板坯铸造过程中,对铸态组织进行细化也很重要,在这种情况下,通过轧制技术细化组织的可能性降低了。在本文中,已经通过光学显微镜,扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了在快速凝固过程中不包含特殊合金元素的钢中硫化物夹杂而使晶粒内针状铁素体形核的可能性。针状铁素体簇的取向也通过电子背散射衍射(EBSD)分析进行了研究。样品中普遍存在氧化物夹杂物和硫化物夹杂物,仅观察到硫化物夹杂物对辅助针状铁素体成核有效。详细讨论了本样品中针状铁素体形成的可能机理,即基质中夹杂锰的贫化区和富磷区。

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