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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of fluorspar on the interfacial reaction between electric arc furnace slag and magnesia refractory: Competitive corrosion-protection mechanism of magnesiowustite layer
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Effect of fluorspar on the interfacial reaction between electric arc furnace slag and magnesia refractory: Competitive corrosion-protection mechanism of magnesiowustite layer

机译:萤石对电弧炉炉渣与镁质耐火材料界面反应的影响:镁铁矿层竞争腐蚀机理

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摘要

The interfacial reaction between the CaO-SiO2-FeO-Al2O3-MnO-MgO-xCaF2 (CaO/SiO2 = 0.9-1.2, x = 0-10 wt %) type electric arc furnace (EAF) steelmaking slag and magnesia refractory was investigated. Using a microscopic analysis, the thickness of the (Mg,Fe)O, magnesiowustite solid solution (intermediate) layer at the slag/ refractory interface was measured. The thickness of the solid solution layer is affected by both slag penetration and refractory dissolution. Since the CaF2 in the slag affects the interfacial reaction between the slag and the refractory, it impacts the thickness of the solid solution layer. In addition, the depth of refractory dissolution was determined by changing the MgO content in the slag, and the depth of slag penetration was also quantitatively measured. Through these experiments, the refractory corrosion-protection mechanism by the CaF2-containing EAF slag was identified. Finally, the critical CaF2 content (= approx. 3 wt%), which had no significant effect on refractory corrosion, was proposed.
机译:研究了CaO-SiO2-FeO-Al2O3-MnO-MgO-xCaF2(CaO/SiO2=0.9-1.2,x=0-10 wt%)型电弧炉炼钢渣与镁质耐火材料的界面反应。通过显微分析,测量了炉渣/耐火材料界面处(Mg,Fe)O,镁砂黄铁矿固溶体(中间)层的厚度。固溶体层的厚度受熔渣渗透和耐火材料溶解的影响。由于炉渣中的CaF2会影响炉渣和耐火材料之间的界面反应,因此会影响固溶体层的厚度。此外,通过改变炉渣中的MgO含量来确定耐火材料的溶解深度,并定量测量炉渣渗透深度。通过这些试验,确定了含CaF2电炉渣的耐火材料防腐机理。最后,提出了对耐火材料腐蚀没有显著影响的临界CaF2含量(=约3 wt%)。

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