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Novel formation of Ferrite in Ingot of 0Cr17Ni4Cu4Nb Stainless Steel

机译:0Cr17Ni4Cu4Nb不锈钢锭中铁素体的新形成

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The ferrite body is the origin of crack and corrosion initiation of steels. Distribution and density of ferrite in seven steel ingots were examined by light optical microscopy and computational modeling, in the study, to explore the correlation of ferrite formation to chemical composition and the mushy zone temperature in ingot forming. The central segregation phenomenon in ferrite distribution was observed in all the examined steel specimens, except 0Cr17Ni4Cu4Nb stainless steel. No significant difference was found in the distribution and density of ferrite among zones of the surface, ? radius, and core in neither the risers nor tails of 0Cr17Ni4Cu4Nb ingots. Additionally, fewer ferrites were found in 0Cr17Ni4Cu4Nb compared to other examined steels. The difference of ferrite formation in 0Cr17Ni4Cu4Nb elicited a debate on the traditional models explicating ferrite formation. Considering the compelling advantages in mechanical strength, plasticity, and corrosion resistance, further investigation on the unusual ferrite formation in 0Cr17Ni4Cu4Nb would help understand the mechanism to improve steel quality. In summary, we observed that ferrite formation in steel was correlated with the mushy zone temperature. The advantages of 0Crl7Ni4Cu4Nb in corrosion resistance and mechanical stability could be the result of fewer ferrites being formed and distributed in a scattered manner in the microstructure of the steel.
机译:铁素体是钢产生裂纹和腐蚀的起点。通过光学显微镜和计算模型研究了七个钢锭中铁素体的分布和密度,研究了铁素体形成与钢锭化学成分和糊状区温度之间的关系。除了0Cr17Ni4Cu4Nb不锈钢外,在所有检查的钢试样中均观察到铁素体分布的中心偏析现象。在表面区域之间的铁素体的分布和密度没有发现显着差异。 0Cr17Ni4Cu4Nb铸锭的上升和尾部都不是半径和芯。此外,与其他检查的钢相比,在0Cr17Ni4Cu4Nb中发现的铁素体更少。 0Cr17Ni4Cu4Nb中铁素体形成的差异引发了关于传统模型的争论,这些模型揭示了铁素体的形成。考虑到机械强度,塑性和耐腐蚀性方面的显着优势,进一步研究0Cr17Ni4Cu4Nb中异常铁素体的形成将有助于理解改善钢质的机理。总之,我们观察到钢中铁素体的形成与糊状区温度有关。 0Crl7Ni4Cu4Nb在耐蚀性和机械稳定性方面的优势可能是由于铁素体的形成和散布在钢的微观结构中的分布较少而导致的。

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