Preparation and characterization of regenerated MgO–CaO refractory bricks sintered under different atmospheres  被引量:1

Preparation and characterization of regenerated MgO–CaO refractory bricks sintered under different atmospheres

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作  者:Gui-bo Qiu Chang-sheng Yue Xiang Li Min Guo Mei Zhang 

机构地区:[1]Beijing Key Lab of Green Recycling and Extraction of Metals, School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing [2]Central Research Institute of Building and Construction Co., Ltd., Metallurgical Corporation of China Ltd.

出  处:《International Journal of Minerals,Metallurgy and Materials》2014年第12期1233-1240,共8页矿物冶金与材料学报(英文版)

基  金:financially supported by the National Natural Science Foundation of China (Nos. 51372019, 51074009, and 50874013);the National Science and Technology Supporting Program (No. 2011BAB03B02)

摘  要:Regenerated MgO-CaO brick samples containing 80wt%, 70wt%, and 60wt% MgO were prepared using spent MgO-CaO bricks and fused magnesia as raw materials and paraffin as a binder. The bricks were sintered at 1873 K for 2 h under an air atmosphere and under an isolating system. The microstructure, mechanical properties at room temperature, and hydration resistance of the regenerated samples were measured and compared. The results indicated that the isolating sintering generated a strongly reducing atmosphere as a result of the incomplete combustion of paraffin, and the partial oxygen pressure was approximately 6.68 × 10^-7 Pa. The properties of the regenerated bricks sintered under air conditions were all higher than those of the bricks sintered under a reducing atmosphere. The deterioration of the bricks was a result of MgO reduction and a decrease in the amount of liquid phase formed during sintering under a reducing atmosphere.Regenerated MgO-CaO brick samples containing 80wt%, 70wt%, and 60wt% MgO were prepared using spent MgO-CaO bricks and fused magnesia as raw materials and paraffin as a binder. The bricks were sintered at 1873 K for 2 h under an air atmosphere and under an isolating system. The microstructure, mechanical properties at room temperature, and hydration resistance of the regenerated samples were measured and compared. The results indicated that the isolating sintering generated a strongly reducing atmosphere as a result of the incomplete combustion of paraffin, and the partial oxygen pressure was approximately 6.68 × 10^-7 Pa. The properties of the regenerated bricks sintered under air conditions were all higher than those of the bricks sintered under a reducing atmosphere. The deterioration of the bricks was a result of MgO reduction and a decrease in the amount of liquid phase formed during sintering under a reducing atmosphere.

关 键 词:REFRACTORIES REGENERATION sintering atmospheres mechanical properties HYDRATION 

分 类 号:TQ175.1[化学工程—硅酸盐工业]

 

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