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首页> 外文期刊>Erzmetall >Optimisation of an Anode Furnace Refractory Lining Using Distinct Magnesia-Chromite Refractory Types
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Optimisation of an Anode Furnace Refractory Lining Using Distinct Magnesia-Chromite Refractory Types

机译:镁铬铁矿不同耐火材料类型对阳极炉耐火衬里的优化

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摘要

In the present paper the results of a four-year investigation of the wear mechanisms affecting anode furnace linings are described. At the time when this study was initiated, the entire lining (apart from the tuyere blocks) consisted of a traditional direct-bonded magnesia-chromite brick. The latter suffered from acute wear due to the stringent chemical, thermal and mechanical conditions imposed. As a result of a microstructural study of samples prepared from industrially worn bricks, the major degradation mechanisms influencing the refractory lining were unravelled. On the basis of the identification of different wear zones in the lining, an optimised refractory configuration was proposed and installed in order to prolong the furnace campaigns. Distinct magnesia-chromite qualities were selected for the different wear zones. During the two following relinings worn bricks from various locations in the lining were collected and investigated. It was confirmed that refractory degradation in anode furnaces comes as a consequence of the combined action of chemical, thermal and mechanical drivers, which interact synergistically with one another. Depending on the region in the lining the relative importance of the drivers varies. Specific attention was given to the chemical wear mechanisms, namely: copper and slag components infiltration, forsterite formation and spinelisation. As a result of the installation of the new, zoned lining configuration a significant improvement of the overall lining lifetime was achieved.
机译:在本文中,描述了影响阳极炉炉衬的磨损机理的四年研究结果。在开始这项研究时,整个衬里(除风口块外)均由传统的直接粘结氧化镁-铬铁砖组成。由于严格的化学,热和机械条件,后者遭受了严重的磨损。通过对由工业磨损砖制备的样品进行微观结构研究的结果,揭示了影响耐火炉衬的主要降解机理。在确定衬里不同磨损区域的基础上,提出并安装了优化的耐火材料结构,以延长炉龄。为不同的磨损区域选择了不同的镁铬铁矿质量。在接下来的两个衬砌过程中,对衬砌中各个位置的磨损砖进行了收集和调查。可以肯定的是,阳极炉的耐火材料降解是化学,热和机械驱动器共同作用的结果。根据衬砌中的区域,驱动程序的相对重要性会有所不同。特别关注化学磨损机理,即:铜和矿渣成分的渗透,镁橄榄石的形成和尖晶石化。由于安装了新的分区衬里配置,因此大大提高了整个衬里的使用寿命。

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