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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Formation mechanism of the graphite-rich protective layer in blast furnace hearths
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Formation mechanism of the graphite-rich protective layer in blast furnace hearths

机译:高炉炉膛中富石墨保护层的形成机理

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摘要

A long campaign life of blast furnaces is heavily linked to the existence of a protective layer in their hearths. In this work, we conducted dissection studies and investigated damage in blast furnace hearths to estimate the formation mechanism of the protective layer. The results illustrate that a significant amount of graphite phase was trapped within the hearth protective layer. Furthermore, on the basis of the thermodynamic and kinetic calculations of the graphite precipitation process, a precipitation potential index related to the formation of the graphite-rich protective layer was proposed to characterize the formation ability of this layer. We determined that, under normal operating conditions, the precipitation of graphite phase from hot metal was thermodynamically possible. Among elements that exist in hot metal, C, Si, and P favor graphite precipitation, whereas Mn and Cr inhibit this process. Moreover, at the same hot-face temperature, an increase of carbon concentration in hot metal can shorten the precipitation time. Finally, the results suggest that measures such as reducing the hot-face temperature and increasing the degree of carbon saturation in hot metal are critically important to improve the precipitation potential index.
机译:高炉的长寿命与炉膛中保护层的存在密切相关。在这项工作中,我们进行了解剖研究,并调查了高炉炉膛中的损伤,以估计保护层的形成机理。结果表明,在炉膛保护层内捕获了大量的石墨相。此外,基于对石墨沉淀过程的热力学和动力学计算,提出了与富石墨保护层的形成有关的沉淀电位指数,以表征该层的形成能力。我们确定,在正常操作条件下,从热力学上可以从铁水中沉淀出石墨相。在铁水中存在的元素中,C,Si和P有利于石墨沉淀,而Mn和Cr抑制该过程。此外,在相同的热面温度下,铁水中碳浓度的增加可以缩短沉淀时间。最后,结果表明,降低铁水温度和增加铁水中碳饱和度等措施对于提高沉淀势指数至关重要。

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