首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Study on the nanocarbon containing Al2O3 - C continuous casting refractories with reduced fixed carbon content
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Study on the nanocarbon containing Al2O3 - C continuous casting refractories with reduced fixed carbon content

机译:含有Al2O3 - C连铸耐火材料的纳米碳的研究,固定碳含量降低

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摘要

Alumina-carbon refractories are widely used in the continuous casting process for steelmaking due to their suitable comprehensive properties. Conventionally, these refractories contain 25-30 wt% carbon, with graphite as the major source, especially to improve corrosion and thermal shock resistances. However, the presence of high carbon encompasses several problems like high energy loss, carbon pickup in steel, oxidation, increased CO2 generation, etc. To avoid these issues, in the present work, alumina-carbon refractories are prepared and evaluated with reduced and fixed carbon content by partially replacing the graphite with nanocarbon. Free carbon addition is maintained at 4 wt% level by varying combination of nanocarbon and graphite content. The alumina carbon refractory compositions are processed through pressing, curing, coking, and evaluated for properties like bulk density and cold crushing strength. Phase analysis and microstructural variations in the compositions are studied along with oxidation resistance at different temperatures. Because of its smaller particle size, nanocarbon can easily fill the gaps between the other refractory particles thereby reduces porosity and improves strength. Also, greater extent of in situ aluminum carbide formation improves the strength in case of nanocarbon containing compositions. (C) 2018 Elsevier B.V. All rights reserved.
机译:氧化铝 - 碳耐火材料广泛用于炼钢的连续铸造过程中,由于其合适的综合性能。通常,这些耐火材料含有25-30重量%的碳,具有石墨作为主要来源,尤其是提高腐蚀和热冲击性。然而,高碳的存在包括高能损失,钢,氧化,增加的二氧化碳代等等几个问题,以避免这些问题,在本作中,制备氧化铝 - 碳耐火材料并用减少和固定评估通过用纳米碳部分代替石墨来碳含量。通过改变纳米碳和石墨含量的组合,在4wt%水平下保持游离碳添加。通过压制,固化,焦化和评估氧化铝碳耐火材料组合物,并评估如堆积密度和冷碎强度等性质。研究了组合物的相分析和组合物的变化以及不同温度下的抗氧化性。由于其较小的粒径,纳米碳罐可以容易地填充其他耐火颗粒之间的间隙,从而减少孔隙率并提高强度。而且,在含纳米碳含量的组合物的情况下,更大的原位铝碳化物形成改善了强度。 (c)2018年elestvier b.v.保留所有权利。

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