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Simulation Study on Direct Desulfurization of Molten Iron by Magnesium Vapor

机译:镁蒸气对铁水直接脱硫的模拟研究

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A new technique of bottom blown method was proposed for desulfurization of molten iron, which uses inert gas to carry magnesium vapor and combines with mechanical stirring. A water model was established based on the similarity principle. Experimental phenomena were recorded by a high-speed camera combining with image processing method. The influence factors on bubbles disintegration and dispersion of molten pool were researched. By the stimulus response technique measuring changes of conductivity in the molten pool, influence factors of mixing time were studied. Results show that: the new technique is conducive to the bubble disintegration and dispersion of the molten pool, which shortens the uniform mixing time and prolongs the residence time of bubbles in the molten pool. The desulfurization efficiency can be enhanced and the removal time of sulfur is shortened. It can also reduce the temperature drop during desulphurization and be beneficial to improve the efficiency utilization of magnesium in iron industry.
机译:提出了一种底吹法脱硫的新技术,该技术利用惰性气体携带镁蒸气并结合机械搅拌进行脱硫。基于相似性原理建立了水模型。用高速相机结合图像处理方法记录了实验现象。研究了影响熔池气泡解体和分散的因素。通过刺激反应技术测量熔池中电导率的变化,研究了混合时间的影响因素。结果表明:新技术有利于气泡在熔池中的崩解和分散,缩短了均匀的混合时间,延长了气泡在熔池中的停留时间。可以提高脱硫效率,缩短脱硫时间。它还可以减少脱硫过程中的温度下降,有利于提高铁工业中镁的利用率。

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