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首页> 外文期刊>Steel Research International >An Experimental Technique for Investigating the Skulling Behavior in the Blast Furnace Hearth
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An Experimental Technique for Investigating the Skulling Behavior in the Blast Furnace Hearth

机译:一种研究高炉炉膛颅骨行为的实验技术

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摘要

The skulling behavior in the blast furnace (BF) hearth has yet to be investigated as few (if any) industrial/experimental studies with particular focus on hot metal are reported in the open literature. As a necessary first step toward a better understanding of the sophisticated behavior, an experimental technique is introduced in the present paper. The experimental apparatus, which mainly consists of a vertical tube furnace, a rotating and moveable pedestal, and a moveable water-cooled probe covered with a multi-layer structured refractory sleeve can utilize industrial coke, pig iron, and BF hearth carbon brick as raw materials. The technique is shown to be capable of producing chemical, thermal, and mechanical conditions similar to those in the real process. The feasibility and potential of the technique are demonstrated by a set of experimental runs. The results indicate that the air gap between the cooling device and the refractory lining plays a decisive role in both skull formation and lining erosion. Furthermore, the microstructure of graphite precipitated during solidification is influenced by the cooling rate, which in practice is affected by the BF hearth operating parameters. It is hoped that the current contribution will stimulate the growing research interest in this subject.
机译:高炉(BF)壁炉中的颅骨行为尚未调查,只有很少(如果有的话)的工业/实验研究,特别是在公开文献中报道了特别关注的热金属。作为更好地理解复杂行为的必要第一步,本文介绍了一种实验技术。该实验装置,主要由垂直管炉,旋转和可移动的基座组成,以及用多层结构耐火套筒覆盖的可移动的水冷探针可以使用工业焦炭,猪铁和BF炉砖作为原料材料。该技术被证明能够生产与实际过程中的化学,热和机械条件类似。通过一组实验运行证明了该技术的可行性和潜力。结果表明,冷却装置和耐火衬里之间的气隙在颅骨形成和衬里腐蚀中起着决定性作用。此外,在凝固过程中沉淀的石墨的微观结构受冷却速率的影响,在实践中受到BF炉膛操作参数的影响。希望目前的贡献将刺激对该主题的日益增长的研究兴趣。

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