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Characterization, microstructure and corrosion behavior of magnesia refractories produced from recycled refractory aggregates

机译:再生耐火骨料生产的镁质耐火材料的表征,微观结构和腐蚀行为

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This paper aims to report the results of some investigations carried out in Iranian steel industries to reuse the spent magnesia graphite refractory bricks in the forms of the new shaped and unshaped magnesia refractories. Economical aspects of recycling and minimizing the environmental effects of spent refracto-ries landfills were the basic goals of this research. The spent MgO-C refractory bricks from electric arc (EAF) and ladle (LF) furnaces were analyzed in terms of microstructural and chemical properties. Differ-ent samples were prepared from natural sintered magnesia and 10-30 wt.% of recycled aggregates in the forms of magnesia refractory brick and ramming mix and their physical and mechanical properties were evaluated. Also the slag corrosion behavior and microstructural properties of corroded samples were investigated. The results showed that the addition of up to 30 wt.% of recycled aggregates had no negative effects on the properties of magnesia refractories.
机译:本文旨在报告在伊朗钢铁行业进行的一些研究结果,这些研究以新的形状和非形状的镁质耐火材料形式重复使用了废氧化镁石墨耐火砖。回收的经济方面和尽量减少废耐火材料垃圾掩埋场的环境影响是这项研究的基本目标。分析了电弧炉(EAF)和钢包(LF)炉中用过的MgO-C耐火砖的微观结构和化学性质。由天然烧结的氧化镁和10-30重量%的氧化镁耐火砖和捣打混合物形式的回收骨料制备了不同的样品,并评估了它们的物理和机械性能。还研究了腐蚀样品的炉渣腐蚀行为和显微组织特性。结果表明,添加至多30 wt。%的再生骨料对氧化镁耐火材料的性能没有负面影响。

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