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The Effect of Titanium Oxide Additions on the Phase Chemistry and Properties of Chromite-Magnesia Refractories

机译:氧化钛添加对铬铁矿耐火材料相化学及性质的影响

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The microstructure of a direct-bonded chromite-magnesia refractory brick, typically used in copper and platinum converters, was modified by adding different amounts of nano-size TiO2 to the raw material mixture. Bricks with 0, 1, 3, 5, and 7 mass% TiO2 were produced and compared in terms of spinel formation; the role of the tetravalent cation Ti4+ in the bonding phase; as well as changes in density, porosity, thermal expansion, and internal stress. This was done through a comprehensive XRD and SEM-EDS study. It was found that Ti is accommodated in the secondary spinel that has formed, where Mg in excess of unity in the tetrahedral site combines with an equal amount of Ti in the octahedral sites to maintain charge balance. The 1 mass% TiO2 brick had the lowest bulk density (but not significantly different from the original chromite-magnesia brick), the smallest difference in unit cell volumes between the primary and secondary spinels, and the lowest stress arising from the smallest difference in linear thermal expansion coefficients of the phases present. The calculated porosities correspond well with experimentally determined apparent porosity values, whereas the linear thermal expansion coefficients calculated at 1392K are similar to the values measured from 293 to 1273 K.
机译:通过向原料混合物中加入不同量的纳米尺寸TiO 2来改变通常用于铜和铂转化器的直接粘结铬铁矿 - 镁质耐火砖的微观结构。在尖晶石形成方面制造和比较0,1,3,5和7质量%TiO 2的砖;四价阳离子Ti4 +在粘接阶段的作用;以及密度,孔隙率,热膨胀和内应力的变化。这是通过全面的XRD和SEMEDS研究完成的。发现Ti容纳在已经形成的次级尖晶石中,其中在四面体部位中超过统一的Mg,在八面体部位中的相等量的Ti组合以保持电荷平衡。 1质量%TiO2砖具有最低的堆积密度(但与原始铬铁矿砖块没有显着不同),初级和次级尖晶石之间的单元电池体积的最小差异,以及从线性的最小差异产生的最低应力存在的阶段的热膨胀系数。计算的孔隙率与实验确定的表观孔隙率值相同,而在1392K处计算的线性热膨胀系数类似于从293至1273k测量的值。

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