Study of scull and lining in the hearth of blast furnace No. 2 of JSC EVRAZ ZSMK (Report 2)

A. M. Коverzin, V. G. Schipizyn, A. Vaschenko, A. S. Bliznyukov, M. R. Sadradinov, А. R. Makavetskas, Yu. A. Fischenko
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Abstract

Results of study of scull and lining composition from the hearth of blast furnace No. 2 of JSC EVRAZ ZSMK after stop for capital overhaul quoted. It was determined, that due to microprobe chemical analysis data, considerable quantity different minerals and metals can be discovered in the scull and in the lining. But chemical analysis of averaged samples and their X-ray structure analysis allows to state, that the scull is formed during crystallization of heat products – cast iron and slag. Therefore the scull base is the following:– metal, in the content of which α-Fe prevails with iron carbides (Fe3C) inclusions, complicated carbides of variable composition (FeхSiyCz), iron and graphite sulfides and phosphides, as a rule, of laminar structure;– graphite in the form of separate phase;– slag components, melilite and anorthite being the base of them (minerals, formed during crystallization of slag of blast furnace heat).At the level of hot metal tap hole and higher the scull and lining are saturated by alkaline metals accompanied by forming leucite, caliofilite, calcilite, zinc (zinc oxide, ganit, willemite in samples), sulphur with forming of sulphides, phosphor (iron phosphides in metal, apatite in slag). Lower the level of tap hole the number of slag inclusions in the scull is not considerable, zinc and alkaline metals were not discovered.In all the samples content of silicon, silicon carbide, carbides, nitrides, titanium carbonitrides in total does not reach level of 5%.
JSC EVRAZ ZSMK 2号高炉炉底炉膛及炉衬的研究(报告二)
介绍了JSC EVRAZ ZSMK 2号高炉停炉大修后炉膛炉浆和炉衬组成的研究结果。通过显微化学分析数据,确定了在头骨和衬里中可以发现大量不同的矿物和金属。但是,对平均样品的化学分析和x射线结构分析表明,头骨是在热产物——铸铁和炉渣结晶过程中形成的。因此,渣基为:-金属,其含量以α-铁为主,以碳化铁(Fe3C)包裹体、变组分复杂碳化物(FeхSiyCz)、铁和石墨的硫化物和磷化物为主,通常呈层状结构;-石墨以分离相形式存在;-渣组分,以镁铝石和钙长石为其基体(矿物,在高炉热渣结晶过程中形成)。在铁水龙头孔及以上的高度,炉膛和炉衬被碱性金属饱和,并形成白晶石、钙长石、钙长石、锌(样品中的氧化锌、锰、铁)、硫(形成硫化物)、磷灰石(金属中的磷化铁、矿渣中的磷灰石)。在出水孔水平较低时,炉渣中夹杂物的数量并不可观,未发现锌和碱金属。在所有样品中硅、碳化硅、碳化物、氮化物、钛碳氮化物的总含量均未达到5%的水平。
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