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Effect of Mg(OH)(2) and sintering temperature on the hydration resistance of CaO aggregate by thermal decomposition

机译:Mg (OH)(2)的影响,烧结温度水化的曹总阻力热分解

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摘要

In spite of the advantages of CaO refractories, such as high refractoriness, potential to produce pure steel molten, and high alkaline corrosion resistance, their application has been limited due to its poor hydration resistance. Introducing additives to improve the hydration resistance of lime is a novel method. The influences of Mg(OH)(2) and sintering temperatures on the sintering and hydration resistance of CaO aggregates that were produced by thermal decomposition were investigated in this paper. The purpose of this work was to produce high-purity CaO raw material with high density, low porosity, well grain growth, and good hydration resistance economically. The sintered samples were characterized by bulk density, apparent porosity, surface appearance, and microstructure. The results indicated that (1) Mg(OH)(2) promoted the grain growth of CaO, reduced the apparent porosity, and improved the density of the specimens. The hydration resistance of the samples was increased. (2) Increasing the sintering temperature improved the hydration resistance of the specimens obviously in the experiment. (3) Grain size of CaO was more uniform with the increment of Mg(OH)(2) content, and the density of the compacts was improved.
机译:尽管曹耐火材料的优点,如耐火度高,潜在的生产纯粹的钢铁熔,高碱性腐蚀抵抗,他们的应用程序是有限的由于其耐水合作用差。添加剂提高水化阻力石灰是一种新颖的方法。毫克(OH)(2)和烧结温度曹的烧结和水化性能由热聚合分解了。这项工作的目的是生产曹高纯原料密度高,低孔隙度、晶粒生长,好水化抵抗经济。样本的特征是体积密度,显气孔率、表面和微观结构。毫克(OH)(2)促进了曹的晶粒生长,减少了显气孔率,提高了标本的密度。样品的电阻增加。提高烧结温度提高了耐水合作用明显的标本在实验中。统一的增量毫克(OH)(2)内容,压块的密度是提高。

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