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The Investigation of Expansion Behavior of Bauxite-based Alumina-magnesia Ramming Mix

机译:铝土矿氧化铝 - 氧化镁夯混合膨胀行为的研究

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In paper,bauxite-based alumina-magnesia ramming mix was prepared using high quality bauxite as aggregates,bauxite,magnesia as matrix and soluble sodium silicate as binder.The expansion behavior as a function of temperature of ramming mix was investigated by adjusting the ratio of w(MgO)/w(Al2O3).The results showed that,as increasing the ratio of w(MgO)/w(Al2O3),the expansion volume became larger and expansion rate became bigger in the temperature range of 950~1450°C due to in situ spinel formation.In temperature range of 1300~1500°C,vast molten phase appeared because of the presence of silica and impurities of TiO2 and Fe2O3 introduced from bauxite,gradually counterbalancing the expansion associated to the in situ spinel.While at 1600°C,plastic reaction begun due to the presence of mass molten phase and the impurities of TiO2 and Fe2O3 dissolved in the in situ spinel,causing lattice deformation and leading to expansion against that at 1500°C.
机译:在纸上,使用高质量的铝土矿作为聚集体,铝土矿,氧化镁作为基质和可溶性硅酸盐作为粘合剂制备铝土矿的氧化铝 - 氧化镁混合物。通过调节比例来研究作为撞击混合物的温度函数的膨胀行为。 W(MgO)/ W(Al2O3)。结果表明,随着W(MgO)/ W(Al2O3)的比例增加,膨胀体积变大而膨胀率在950〜1450°C的温度范围内变得更大由于原位尖晶石形成。在1300〜1500℃的温度范围内,由于存在二氧化硅和从铝土矿的二氧化硅和杂质的存在而出现大量的熔融相,逐渐对与于原位尖晶石相关的膨胀逐渐平衡。 1600℃,塑料反应由于质量熔融相和溶解在原位尖晶石中的TiO 2和Fe 2 O 3的杂质而开始,导致晶格变形并导致在1500℃下膨胀。

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