An Experimental Study of the Formation of Surface Agglomerates in a Submerged Arc Furnace

Ville-Valtteri Visuri, E. Kunelius, E. Puukko, T. Fabritius
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Abstract

Submerged arc furnace (SAF) is a continuously operating furnace used for ferrochrome production. As the SAF is practically full of feed materials, liquid metal and slag, agglomerates may form in different parts of the furnace. The aim of this work was to set up an experimental apparatus to study the effect of temperature and atmosphere on the formation tendency of agglomerates. The agglomerates formed in the experiments were analyzed using a scanning electron microscope to study their agglomeration mechanism. The results indicate that the main agglomeration mechanisms are sintering and cold welding. Agglomerates formed by sintering exhibited both metallic and oxidic binder phases. The compression strength of the agglomerates was found to exhibit high variance but did exhibit a clear dependence on the agglomeration mechanism.
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埋弧炉表面结块形成的实验研究
埋弧炉(SAF)是一种用于铬铁生产的连续炉。由于SAF几乎充满了原料、液态金属和炉渣,因此炉内的不同部位可能会形成结块。本工作的目的是建立一个实验装置,研究温度和气氛对团聚体形成倾向的影响。利用扫描电镜对实验中形成的团聚体进行了分析,研究了其团聚机理。结果表明,烧结和冷焊是主要的团聚机制。烧结形成的团块具有金属相和氧化结合剂相。发现团聚体的抗压强度表现出很高的方差,但确实表现出明显的依赖于团聚机制。
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