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以特级矾土熟料(5~3、3~1 mm)、棕刚玉(≤1 mm)、SiC(≤1 mm)、球状沥青(1~0.5 mm)、电熔白刚玉(≤0.074 mm)、活性α-Al2O3微粉、SiO2微粉、硅粉(d50=20.81μm)为原料制备Al2O3-SiC-C浇注料,分别以质量分数为0、1%、2%、3%、4%、5%和6%的硅粉等量替代白刚玉粉,研究了硅粉对浇注料常温物理性能和抗氧化性能的影响,并采用Factsage、SEM和EPMA等手段对试样进行热力学分析和显微结构分析。结果表明:1)随着硅粉含量的增加,试样的显气孔率逐渐降低,体积密度先增大后减小,常温强度明显提高。2)硅粉可以提高浇注料的抗氧化性能,在硅粉加入量为4%(w)时,其抗氧化性能最好。3)抗氧化试验后,试样边缘部位原位反应生成的莫来石堵塞了气孔,使得试样边缘结构致密;试样过渡区域有少量的莫来石和SiO2生成,封闭了表面的气孔,进一步阻止了氧气的进入;试样中心区域有少量晶须状的SiC生成,填充在骨架结构中,起强化增韧的作用。

Al2O3-SiC-C castables were prepared using super grade bauxite (5 -3,3 -1 mm),brown co-rundum (≤1 mm),silicon carbide (≤1 mm),ball pitch (1 -0.5 mm),white fused corundum (≤0.074 mm ),active α-Al2O3 micropowder,silica micropowder and Si powder (d50 =20.81 μm)as starting materi-als.Effect of silicon powder on cold physical properties and oxidation resistance was researched by repla-cing white corundum powder with 0,1%,2%,3%,4%,5% and 6% (in mass)of silicon powder,respec-tively.The thermodynamic and microstructure of specimens were analyzed by Factsage,SEM and EPMA. The results show that:(1)as Si powder addition increases,the apparent porosity decreases,the bulk den-sity increases first and then decreases,and the cold strength increases obviously;(2)the addition of Si can improve the oxidation resistance of castables;when the Si addition is 4%,the castable performs the best oxidation resistance;(3)the mullite generated during in-situ reaction on the edge of specimen fills the holes and makes the structure dense;in the transition region,the formation of mullite and SiO2 fills up the holes and prevents oxygen from entering.In the central area,some whisker-shaped SiC forms and fills in the in-terstices of aggregates structure,strengthening and toughening the structure.

参考文献

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