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作 者:孙勇[1] 马北越[1] 孙朔[1] 于景坤[1] 刘翔鹏[2]
机构地区:[1]东北大学材料与冶金学院,辽宁沈阳110004 [2]吉林省冶金设计院有限责任公司,吉林长春130022
出 处:《中国冶金》2009年第11期15-18,共4页China Metallurgy
摘 要:通过添加Fe2O3微粉的方法,研究了Fe2O3微粉对MgO-CaO系耐火材料烧结性能和抗水化性能的影响。试验结果表明,添加Fe2O3微粉可以有效地促进MgO-CaO系耐火材料的烧结,抑制其水化速度。当Fe2O3的添加量在0~3%时,随着Fe2O3添加量的增加,耐火材料试样的体积密度先增加后减小,显气孔率则先减小后增加,且两者均在Fe2O3为1%处出现极值。当Fe2O3的添加量在0.2%~0.5%的范围时,耐火材料试样的显气孔率和体积密度变化最明显。当Fe2O3添加量为1%时,将试样在温度为60℃、相对湿度为75%的条件下水化144 h后,其粉化率仅为1.46%。By adding fine Fe2O3 powder, the effect of the Fe2O3 addition on the properties of sintering and hydration resistance of MgO-CaO refractories was investigated. The results showed that the sintering property of the MgO- CaO refractories could be promoted dramatically, and the hydration of the MgO-CaO refractories could be inhibited. When increasing the Fe2O3 amount from 0 to 3%, the bulk density of the MgO-CaO refractories increased first and then decreased, the apparent porosity gained a sharp decrease and then increased by contraries. They both had extreme values when the Fe2O3 addition was 1%. The bulk density and apparent porosity changed obviously when the Fe2O3 addition was between 0.2% and 0.5 %. The chalked ratio of the MgO-CaO samples added with 1% Fe2O3 was only 1.46% when hydrated at 60℃ (relative moisture 75%) for 144 h.
关 键 词:MgO-CaO系耐火材料 烧结性能 抗水化 Fe2O3微粉
分 类 号:TU545[建筑科学—建筑技术科学]
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