首页> 外文期刊>Refractories and Industrial Ceramics >NEW PERICLASE-MAGNESIUM ALUMINATE SPINEL REFRACTORIES FROM SINTERED HIGH-PURITY DEAD BURNED MAGNESITE AND NEW VARIOUS PRESYNTHESIZED SPINEL-BASED COMPOSITIONS. II. COMPOSITIONAL VARIATION BETWEEN COEXISTING SPINEL, PERICLASE, AND Ca-SILICATE AND Ca-ALUMI NATE PHASES IN MAGNESIA SPINEL REFRACTORIES AND IN THEIR SPINEL-BASED PRECURSORS
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NEW PERICLASE-MAGNESIUM ALUMINATE SPINEL REFRACTORIES FROM SINTERED HIGH-PURITY DEAD BURNED MAGNESITE AND NEW VARIOUS PRESYNTHESIZED SPINEL-BASED COMPOSITIONS. II. COMPOSITIONAL VARIATION BETWEEN COEXISTING SPINEL, PERICLASE, AND Ca-SILICATE AND Ca-ALUMI NATE PHASES IN MAGNESIA SPINEL REFRACTORIES AND IN THEIR SPINEL-BASED PRECURSORS

机译:烧结高纯熟烧菱镁矿和新的各种预合成的尖晶石成分的新的胶束-镁铝酸盐尖晶石耐火材料。二。镁尖晶石耐火材料及其基于尖晶石的前体中共存的尖晶石,钙钛矿,硅酸钙和铝酸钙相的组成变化

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摘要

The chemistry and distribution of phases formed in a set of six laboratory-prepared magnesia-magnesium aluminate spinel ceramics and in three of their precursor spinel-based compositions, sintered at 1600 and 1760 respectively, are examined and compared. The evaluation of the results is the basis for the industry design of magnesia spinel refractories for new advanced applications. In each type of the materials, the spinel phases formed under their firing temperatures seem to have a strong preference for the normal structure. Cracked and noncracked domains in periclase crystals from spinel-based compositions is probably facilitated by differences in the thermal expansion coefficient of periclase crystals having domains differing in their Al_2O_3 contents. Periclase and spinel mixtures at lower temperatures (1600) involved reactions leading to the formation of different periclase s.s and spinel s.s, which depart clearly from equilibrium assemblages. Minor amounts of stoichiometric Ca-silicate and Ca-aluminate phases were formed in all materials.
机译:检查并比较了分别在1600和1760烧结的一组六种实验室制备的镁铝酸铝尖晶石陶瓷及其三种前体尖晶石基成分中形成的相的化学性质和分布。结果的评估是用于新型先进应用的镁尖晶石耐火材料工业设计的基础。在每种类型的材料中,在其焙烧温度下形成的尖晶石相似乎对正常结构具有强烈的偏好。来自具有尖晶石基组合物的钙长石晶体中的裂纹和非裂纹畴可能是由于具有Al_2O_3含量不同的畴的钙长石晶体的热膨胀系数不同而促进的。在较低温度(1600℃)下,过氧化物酶和尖晶石混合物涉及反应,导致形成不同的过氧化物酶和尖晶石,明显偏离平衡组合。在所有材料中均形成了少量化学计量的硅酸钙和铝酸钙相。

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