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首页> 外文期刊>ISIJ international >Influence of Al/Ti Ratio in Ti-ULC Steel and Refractory Components of Submerged Entry Nozzle on Formation of Clogging Deposits
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Influence of Al/Ti Ratio in Ti-ULC Steel and Refractory Components of Submerged Entry Nozzle on Formation of Clogging Deposits

机译:荔枝钢和浸没式喷嘴耐火元件对堵塞沉积物形成的影响

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摘要

Nozzle clogging during continuous casting of Ti-ULC (Ultra Low C) steel was investigated by inspections of plant-used SENs and laboratory scale experiments using a rotating finger method. Various Al/Ti ratios in the steel and different kinds of nozzles (with or without CaO) were employed. Clog deposits found in the used SENs were composed of complicated oxide (CaO-Al_2O_3-TiO_x-...), Fe drops and chunks. Increasing Ti concentration increased amount of the deposit the metallic deposits. In the laboratory scale experiments, increasing Al/Ti ratios was effective to suppress the formation of the deposit and the oxidation loss of Ti in the steel. When a refractory without CaO was used, increasing Al/Ti ratio decreased the portion of Ti oxide in the deposit. Almost no Fe drops were observed, except for a thin layer of Fe on surface of the oxide deposit. When CaO-lined refractory was used, many numbers of Fe drops were found inside the deposit. Increasing Al/Ti ratio lowered Ti peak in the oxide deposit. The present results lend a strong support that Ti-ULC steel is oxidized by CO gas from nozzle refractory, forming Fe_tO-containing liquid oxide and solid alumina. The liquid oxide is reduced to leave Fe drops and Al_2O_3-TiO_x layer. If CaO presents in the nozzle, then a complicated oxide of CaO-Al_2O_3-TiO_x forms, as was found in the SEN from the practical operation.
机译:通过使用旋转手指方法检查植物使用的SENS和实验室规模实验,研究了Ti-ULC(超低C)钢连续铸造期间的喷嘴堵塞。钢中的各种Al / Ti比率和不同种类的喷嘴(有或没有CaO)。在二手SEN中发现的堵塞沉积物由复杂的氧化物(CAO-AL_2O_3-TIO_X -...),FE滴和块组成。增加Ti浓度增加的金属沉积量增加。在实验室规模实验中,增加Al / Ti比率是有效地抑制沉积物的形成和钢中Ti的氧化损失。当使用没有CAO的耐火材料时,增加Al / Ti比在沉积物中降低了Ti氧化物的一部分。除了氧化物沉积物表面上的薄二层外,几乎没有观察到Fe滴。使用镉衬里耐火材料时,矿床内部发现了许多数量的Fe滴。增加Al / Ti比降低氧化物沉积物中的Ti峰。本结果借鉴了Ti-ULC钢通过来自喷嘴耐火的CO气体氧化,形成Fe_to含氧化物和固体氧化铝。液体氧化物降低以离开Fe滴和Al_2O_3-TiO_x层。如果CAO在喷嘴中呈现,则在实际操作中发现了如森中的CAO-AL_2O_3-TIO_X形式的复杂氧化物。

著录项

  • 来源
    《ISIJ international》 |2019年第5期|749-758|共10页
  • 作者单位

    Graduate Institute of Ferrous Technology Pohang University of Science and Technology 77 Cheongamro Namgu Pohang Kyungbuk 37673 Rep. of Korea;

    Gwanyang Technical Research Laboratories POSCO Gwangyang Jeonnam 57807 Rep. of Korea;

    Steelmaking Department POSCO Gwangyang Jeonnam 57807 Rep. of Korea;

    Pohang Technical Research Laboratories POSCO Pohang Kyungbuk 37859 Rep. of Korea;

    Graduate Institute of Ferrous Technology Pohang University of Science and Technology 77 Cheongamro Namgu Pohang Kyungbuk 37673 Rep. of Korea Jeonbuk Regional Division Korean Institute of Industrial Technology Kimje Jeonbuk 54325 Republic of Korea;

    Graduate Institute of Ferrous Technology Pohang University of Science and Technology 77 Cheongamro Namgu Pohang Kyungbuk 37673 Rep. of Korea Centre for Research in Computational Thermochemistry (CRCT) Department of Chemical Engineering Polytechnique Montreal Montreal Quebec H3C 3A7 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ti-ULC steel casting; nozzle clogging; Al/Ti ratio; Fe_tO-Al_2O_3-TiO_x; nozzle refractory;

    机译:TI-ULC钢铸件;喷嘴堵塞;Al / Ti比率;fe_to-al_2o_3-tio_x;喷嘴耐火材料;

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