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Corrosion Behaviors Of Zirconia Refractory Bycao-sio_2-mgo-caf_2 Slag

机译:Caca-sio_2-mgo-caf_2渣对氧化锆耐火材料的腐蚀行为

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摘要

In this work the corrosion behaviors of zirconia refractory (partially MgO-stabilized zirconia) was investigated in CaO-SiO_2-MgO-CaF_2 slag with varying CaF_2 content at 1873 K. To figure out the corrosion mechanism, the characteristics of present slag at high temperature were examined in terms of melting temperature and vaporization behaviors. Corrosion experiment and melting temperature measurement were carried out by heating microscope (HM) and the vaporization phenomenon was investigated by thermo gravimetry-differential scanning calorimetry. After experiment, the corroded interfaces of zirconia refractory by slag were analyzed by scanning electron microscope-energy dispersive spectroscopy and electron probe microanalysis. With an addition of CaF2, three different layers were formed at the interface of slag and zirconia refractory. Furthermore, the corrosion behaviors of zirconia refractory were found to be continuously accelerated with an increase of CaF2 which facilitated the dissolution of intermediate compound. On the other hand, melting temperature of CaO-SiO_2-MgO-CaF_2 slag showed no continuous decrease with an increase of CaF_2. Also, considerable vaporization of fluoride gas was occurred in high CaF_2 containing slag during HM experiment which might cause a gradual change of slag composition and also environmental pollution. From the results, present study suggested that a proper amount of CaF_2 should be added when it is used for enhancing refining capacity of slag in order not to cause any severe damage of zir-conia-based refractory by slag.
机译:在这项工作中,研究了在1873 K时CaF_2含量变化的CaO-SiO_2-MgO-CaF_2炉渣中氧化锆耐火材料(部分为MgO稳定的氧化锆)的腐蚀行为。为阐明腐蚀机理,研究了目前炉渣在高温下的特性根据熔融温度和汽化行为检查。通过加热显微镜(HM)进行腐蚀实验和熔融温度测量,并通过热重分析-差示扫描量热法研究汽化现象。实验后,通过扫描电子显微镜-能量色散光谱法和电子探针显微分析法分析了熔渣对氧化锆耐火材料的腐蚀界面。加入CaF2,在炉渣和氧化锆耐火材料的界面处形成了三个不同的层。此外,发现随着CaF2的增加,氧化锆耐火材料的腐蚀行为不断加速,这促进了中间化合物的溶解。另一方面,CaO-SiO_2-MgO-CaF_2炉渣的熔化温度没有随CaF_2的增加而连续降低。另外,在HM实验中,高CaF_2含量的炉渣中会发生大量的氟化物气化,这可能会导致炉渣成分的逐渐变化以及对环境的污染。从结果来看,目前的研究表明,当使用CaF_2来提高炉渣的提炼能力时,应添加适量的CaF_2,以免造成炉渣对锆基耐火材料的严重损害。

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  • 来源
    《Journal of the American Ceramic Society》 |2009年第3期|717-723|共7页
  • 作者

    Min Oh Suk; Joo Hyun Park;

  • 作者单位

    Stainless Steel Research Group, Technical Research Laboratories, POSCO, Pohang, Korea;

  • 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

  • 入库时间 2022-08-17 13:41:57

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