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Effects of Cr2O3 Content on Microstructure and Mechanical Properties of Al2O3 Matrix Composites

机译:Cr2O3含量对Al2O3基复合材料微观结构和力学性能的影响

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Al2O3-Cr2O3 refractories are completely substitution solid solutions and can effectively resist slag erosion when used as an industrial furnace lining. In order to provide suitable chromium corundum refractory with excellent slag resistance and mechanical properties for smelting reduction ironmaking, Al2O3-Cr2O3 samples with different mass percentages (0, 10, 20, 30, 40 wt.%) of Cr2O3 were prepared by a normal pressure sintering process to study its sintering properties, mechanical properties, thermal shock resistance, and microstructure. The results of densification behavior showed that the introduction of Cr2O3 deteriorates the compactness, the relative density and volume shrinkage rate of the composite material decrease with the increase of the Cr2O3 content, and the apparent porosity increases accordingly. In terms of mechanical properties, the hardness, compressive strength, and flexural strength of Al2O3-Cr2O3 material decrease gradually with the increase of Cr2O3. After 10 and 20 thermal shock cycles, the flexural strengths of the samples all decreased. With the increase of Cr2O3 in these samples, the loss rate of flexural strength gradually increased. Considering the slag resistance and mechanical properties of the composite material, the Al2O3-Cr2O3 composite refractory with Cr2O3 content of 20–30% can meet the requirements of smelting reduction iron making kiln lining.
机译:AL2O3-CR2O3耐火材料是完全取代的固溶解决方案,可在用作工业炉衬里时有效地抵抗渣腐蚀。为了提供合适的铬刚玉耐火,具有优异的熔渣性和用于熔炼炼制的机械性能,通过常压制备具有不同质量百分比(0,10,20,30,40重量%)的CR2O3的Al2O3-Cr2O3样品烧结过程研究其烧结性能,机械性能,耐热冲击性和微观结构。致密化行为的结果表明,CR2O3的引入劣化,复合材料的相对密度和体积收缩率随CR2O3含量的增加而降低,并且表观孔隙率相应地增加。就机械性能而言,随着CR2O3的增加,Al 2 O 3-Cr2O3材料的硬度,抗压强度和抗弯强度逐渐降低。在10和20个热冲击循环之后,样品的弯曲强度均降低。随着CR2O3在这些样品中的增加,弯曲强度的损失率逐渐增加。考虑到复合材料的矿渣和机械性能,CR2O3含量为20-30%的Al2O3-Cr2O3复合耐火可以满足冶炼减少铁制造窑衬的要求。

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