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机构地区:[1]马鞍山钢铁股份有限公司炼铁总厂,安徽马鞍山 [2]安徽工业大学,安徽马鞍山
出 处:《冶金工程》2019年第3期148-154,共7页Metallurgical Engineering
摘 要:本文着重介绍了马钢A#4000 m³高炉在炉役后期碳砖温度快速上升后,通过使用含钛物料、增强局部冷却强度、停用碳砖温度高铁口,采用合理的冶炼强度、适宜的炉缸热制度、送风参数、装料制度等,炉缸敏感碳砖温度点均呈现下降趋势,其中最高点由684℃持续下降至100℃左右,实现了高炉炉役后期生产的安全和高炉的稳定顺行。This article focuses on the operational practices of A#(4000 m3)blast furnace of Masteel in its late furnace campaign after the hearth carbon brick temperature rising suddenly to a high level.The average carbon brick temperature exhibited a tendency of declining and also the highest temper-ature declined from 684?C to 100?C or so,by employing such methods as using ore with certain amount of titanium element,enhancing cooling intensity,stopping the usage of the tapping hole in the direction of carbon brick with high level temperature,reasonably reducing smelting intensity,maintaining suitable heat balance in hearth,controlling blast parameters,adjusting matrix of bell-less top charging system etc.As a result,the 4000 m3(A#)blast furnace achieved a safe and stable operational performance in its late stage of a campaign.
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