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钛铁矿熔炼过程中DC炉内挂渣层厚度控制的研究

Research of Thickness Control of Freeze Lining During Titanium Slag Smelting in DC Arc Furnace

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【作者】 黄世弘雷霆韩丰霞周林

【Author】 HUANG Shi-hong;LEI Ting;HAN Feng-xia;ZHOU Lin;Faculty of Metallurgical and Energy Engineering,Kunming University of Science and Technology;Kunming Metallurgy College;Quality Development Institue,Kunming University of Science and Technology;Technology Center of Yunnan Metallurgy Group Co.,Ltd;

【机构】 昆明理工大学冶金与能源工程学院昆明冶金高等专科学校昆明理工大学质量发展研究院云南冶金集团股份有限公司技术中心

【摘要】 分析了炉内的工艺温度和渣中MgO的含量随加热时间的变化特征.结果表明DC炉内挂渣层厚度主要与炉内的工艺温度和渣中MgO的含量有关.整个实验过程的工艺温度控制在1700~1750℃范围内,渣中MgO质量含量控制到小于1.8%时,可有效避免炉壁烧穿.随工艺温度的增加,渣中MgO质量含量增加,挂渣层减薄.研究熔炼过程中DC炉内挂渣层厚度变化对熔炼工艺的稳定控制和生产效率的提高具有重要的意义.

【Abstract】 The thickness of freeze lining determines the stability of the titanium slag smelting process in DC arc furnace. The variation of processing temperature and MgO content with heating time are analyzed. Results show that the processing temperature of the furnace and the MgO content have a significant effect on the thickness of freeze lining during titanium slag smelting in DC arc furnace. When the experiment processing temperature is controlled in the range of 1 700 ~ 1 750 ℃,and MgO content in slag controlled less than 1. 8 %,the accident of DC furnace burnthrough can be avoided effectively. With the rise of processing temperature,MgO content in slag increases,and the thickness of freeze lining decreases. Studies on the thickness control of freeze lining during titanium slag smelting in DC arc furnace can help better control the smelting process and improve the production efficiency.

【关键词】 挂渣层温度钛铁矿熔炼
【Key words】 freeze liningtemperatureilmenitesmelting
【基金】 国家科技部国际合作资助项目(2007DFA71490)
  • 【文献出处】 昆明理工大学学报(自然科学版) ,Journal of Kunming University of Science and Technology(Natural Science Edition) , 编辑部邮箱 ,2013年06期
  • 【分类号】TF823
  • 【下载频次】80
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