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Slag Melting Characteristic of Slag Forming and Slag Splashing for BOF Less Slag Smelting

机译:转炉少渣转炉渣形成与溅渣的熔渣特性

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摘要

The slag melting characteristic of slag forming and slag splashing for 300 t BOF less slag process is researched by combining the methods of the slag chemical composition, the melting point determination and the petrographic analysis. The results show that the melting point of final slag for less slag smelting is 20 ~C lower than that for conventional smelting. According to results of the petrographic analysis, the C3S (3CaO ~ SiO2) and C2S (2CaO · SiO2) content for less slag smelting are lower than those for conventional smelting, while the RO (FeO, MgO, MnO, etc) phase and C4AF (4CaO · Al2O3· Fe2O3) phase are higher than those for conventional smelting. According to results of the chemical analysis, the (CaO) content and slag basicity for less slag smelting are higher than those for conventional smelting, while (FeO) and (MgO) content in slag for less slag smelting are almost equal to those for conventional smelting. The reason why slag melting point for less slag smelting is lower than that for con- ventional smelting is that the quantity of added fluorite for less slag smelting is more than that for conventional smel- ting. According tO the analysis results the slag melting point is determined by the C3S, C2S, RO phase and C4AF content. According to the results of slag melting characteristic before and after slag splashing for less slag smelting, the present adjusting slag process has little effect. It is important to adjust the composition of BOF final slag. The (FeO) content in slag is to be reduced at the slag splashing and adjusting slag process for less slag smelting.
机译:结合炉渣化学成分,熔点测定和岩石学分析方法,研究了300t BOF以下炉渣工艺中成渣,溅渣的熔渣特性。结果表明,渣量少的最终渣的熔点比常规渣的熔点低20℃。根据岩相分析结果,渣少的C3S(3CaO〜SiO2)和C2S(2CaO·SiO2)的含量低于常规冶炼,而RO(FeO,MgO,MnO等)相和C4AF (4CaO·Al2O3·Fe2O3)相比常规冶炼要高。根据化学分析的结果,少渣冶炼中的(CaO)含量和渣碱度高于常规冶炼,而少渣冶炼中的(FeO)和(MgO)含量几乎与常规冶炼相等。冶炼。较少熔渣的炉渣熔点比常规熔渣的炉渣熔点低的原因是,较少熔渣炉渣的萤石添加量要比常规熔炼炉渣多。根据分析结果,炉渣熔点由C3S,C2S,RO相和C4AF含量确定。根据炉渣飞溅前后炉渣熔化特性的结果,减少了炉渣的熔炼,目前的调节炉渣工艺影响不大。调整转炉最终炉渣的组成非常重要。溅渣时应降低渣中(FeO)的含量,并在调整渣过程中减少渣的冶炼。

著录项

  • 来源
    《钢铁研究学报(英文版)》 |2012年第7期|20-25,32|共7页
  • 作者单位

    Metallurgical Technology Research Department, Central Iron and Steel Research Institute, Beijing 100081, China;

    Metallurgical Technology Research Department, Central Iron and Steel Research Institute, Beijing 100081, China;

    Metallurgical Technology Research Department, Central Iron and Steel Research Institute, Beijing 100081, China;

    Steelmaking Works, Shougang Jingtang Iron and Steel Co Ltd, Tangshan 063200, Hebei, China;

    Steelmaking Works, Shougang Jingtang Iron and Steel Co Ltd, Tangshan 063200, Hebei, China;

    Steelmaking Works, Shougang Jingtang Iron and Steel Co Ltd, Tangshan 063200, Hebei, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 转炉炼钢;
  • 关键词

    少渣冶炼; 炉渣碱度; 溅渣护炉; 熔融特性; 造渣; 转炉; 化学组合物; 熔点测定;

    机译:少渣冶炼;炉渣碱度;溅渣护炉;熔融特性;造渣;转炉;化学组合物;熔点测定;
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