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首页> 外文期刊>Journal of the European Ceramic Society >Identification of magnesia-chromite refractory degradation mechanisms of secondary copper smelter linings
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Identification of magnesia-chromite refractory degradation mechanisms of secondary copper smelter linings

机译:二级铜冶炼厂炉衬氧化镁-铬铁矿难降解机理的确定

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摘要

Used direct-bonded magnesia-chromite refractory bricks from a secondary Cu smelter were collected to characterize the degradation occurring during application. Based on this post-mortem analysis, lab scale experiments were designed using the direct-bonded refractory type and a fused grain magnesia-chromite refractory. Firstly, the infiltration behavior of a Cu-CuxO and a Cu-CuxO-PbO mixture was investigated. Secondly, the influence of temperature and the prior infiltration of a Cu-CuxO mixture on the infiltration of the ZnO containing fayalite slag was determined. The combination of the post-mortem study and the lab scale tests allowed a more comprehensive understanding of the evolution of the refractory microstructure during degradation. Likewise, it allowed to evaluate how certain parameters, such as temperature and refractory type, affect the infiltration and degradation behavior. As a consequence, conclusions can be drawn about measures to minimize refractory wear in copper smelter linings. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从二级铜冶炼厂收集使用过的直接粘结的镁铬铁质耐火砖,以表征施工过程中发生的降解。在此事后分析的基础上,设计了实验室规模的实验,使用的是直接粘结耐火材料类型和熔融颗粒氧化镁-铬铁矿耐火材料。首先,研究了Cu-CuxO和Cu-CuxO-PbO混合物的渗透行为。其次,确定温度和Cu-CuxO混合物的先入渗入对含ZnO铁橄榄石炉渣渗入的影响。事后研究和实验室规模测试的结合,使人们可以更全面地了解降解过程中耐火显微组织的演变。同样,它可以评估某些参数(例如温度和耐火材料类型)如何影响渗透和降解行为。结果,可以得出关于使铜冶炼炉衬的耐火材料磨损最小化的措施的结论。 (C)2016 Elsevier Ltd.保留所有权利。

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