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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Effect of MgO Contents on the Dissolution Rate of Alumina into Molten CaO-SiO_2-Al_2O_3-MgO Slags
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Effect of MgO Contents on the Dissolution Rate of Alumina into Molten CaO-SiO_2-Al_2O_3-MgO Slags

机译:MgO含量对氧化铝在CaO-SiO_2-Al_2O_3-MgO熔渣中氧化铝溶解速率的影响

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Dissolution rates of sintered alumina into molten CaO-SiO_2-9 mass percent Al_2O_3-MgO (CaO/SiO_2=0.80) slags were measured by a rotating specimen method, the dissolution rates into slags containing 5,10, and 15 mass percent MgO were measured at 1773,1823 and 1873 K, and the revolution speed varied from 100 to 600 rpm. The microstructures of specimens after experiments were examined by an electron probe microanalyzer (EPMA), and the dissolution mechanism was discussed.The dissolution rate of alumina increased with increasing revolution speed and temperature. The dissolution rate of alumina into the slags containing more than 10 mass percent MgO were increased more rapidly with increasing revolution speed and temperatures, compared with that into the slag containing 5 mass percent MgO.The dissolution rate of alumina decreased with increasing MgO content up to 15 mass percent. According to the EPMA analysis, a deposition of MgO centre dot Al_2O_3 spinel particles was observed in slag adjacent to the alumina specimen. The spinel particles formed a layer in slags containing more than 10 mass percent MgO, and the thickness of the layer was increased with increasing MgO content in slags. These morphological differences of the spinel layers suggest that the spinel layers suppress the flow of slag components, and the dissolution rate decreases with increasing MgO content. Moreover, the morphology of spinel layer was changed with revolution speed, this morphological change is considered to be the reason why the dependence of the dissolution rate on revolution speed differs by the MgO content in slag.
机译:通过旋转试样法测量烧结的氧化铝在熔融的CaO-SiO_2-9质量百分比的Al_2O_3-MgO(CaO / SiO_2 = 0.80)炉渣中的溶解速率,测量在含5,10和15质量%的MgO的炉渣中的溶解速率。在1773、1823和1873 K时,转速从100到600 rpm不等。实验后用电子探针显微分析仪(EPMA)对试样的微观结构进行了研究,并探讨了其溶解机理。氧化铝的溶解速率随转速和温度的升高而增加。氧化铝在熔渣含量大于10%的熔渣中的溶解速率随转速和温度的增加而增加得更快,而在镁熔渣含量大于等于5%的熔渣中,氧化铝的溶解速率随着MgO含量的增加而降低。 15质量%。根据EPMA分析,在与氧化铝样品相邻的炉渣中观察到MgO中心点Al_2O_3尖晶石颗粒的沉积。尖晶石颗粒在含10%(质量)以上的MgO的炉渣中形成一层,并且随着炉渣中MgO含量的增加,层厚增加。尖晶石层的这些形态差异表明,尖晶石层抑制了炉渣成分的流动,并且溶解速率随着MgO含量的增加而降低。而且,尖晶石层的形貌随转速而变化,这种形态变化被认为是熔渣中MgO含量不同,溶解速率对转速的依赖性不同的原因。

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