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首页> 外文期刊>Steel Research International >Preliminary Investigation of Fluid Mixing Characteristics during Side and Top Combined Blowing AOD Refining Process of Stainless Steel
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Preliminary Investigation of Fluid Mixing Characteristics during Side and Top Combined Blowing AOD Refining Process of Stainless Steel

机译:不锈钢侧面和顶部联合吹塑AOD精炼过程中流体混合特性的初步研究

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The fluid mixing characteristics in the bath during the side and top combined blowing AOD (argon-oxygen decarburization) refining process of stainless steel were preliminarily investigated on a water model unit of a 120 t AOD converter. The geometric similarity ratio between the model and its prototype (including the side tuyeres and the top lances) was 1:4. On the basis of the theoretical calculations for the parameters of the gas streams in the side tuyeres and the top lances, the gas blowing rates used for the model were more reasonably determined. The influence of the tuyere number and position arrangement, and the gas flow rates for side and top blowing on the characteristics was examined. The results demonstrated that the liquid in the bath underwent vigorous circulatory motion during gas blowing, without obvious dead zone in the bath, resulting in a high mixing effectiveness. The gas flow rate of the main tuyere had a governing role on the characteristics, a suitable increase in the gas flow rate of the subtuyere could improve mixing efficiency, and the gas jet from the top lance made the mixing time prolong. Corresponding to the oxygen top blowing rate specified by the technology, a roughly equivalent and good mixing effectiveness could be reached by using six side tuyeres with an angle of 27 degrees between each tuyere, and five side tuyeres with an angular separation of 22.5 or 27 degrees between each tuyere. The relationships of the mixing time with trie gas blowing rates of main-tuyeres and sub-tuyeres and top lance, the angle between each tuyere, and the tuyere number were evaluated.
机译:在120 t AOD转炉的水模型单元上,初步研究了不锈钢侧边和顶部联合吹塑AOD(氩氧脱碳)精炼过程中熔池中的流体混合特性。该模型与其原型(包括侧风口和顶部喷枪)之间的几何相似比为1:4。根据对侧风口和顶喷管中气流参数的理论计算,可以更合理地确定用于该模型的气体吹入速率。研究了风口数量和位置安排以及侧面吹气和顶部吹气的气体流量对特性的影响。结果表明,在吹气过程中,熔池中的液体经历了剧烈的循环运动,在熔池中没有明显的死区,从而具有很高的混合效率。主风口的气体流量对特性有控制作用,适当增加子风口的气体流量可以提高混合效率,并且从顶部喷枪喷出的气体可以延长混合时间。对应于该技术指定的氧气顶吹速率,通过使用每个风口之间的角度为27度的六个侧风口和角度间隔为22.5或27度的五个侧风口,可以达到大致等效的混合效果在每个风口之间。评价了混合时间与主风口,副风口和顶风枪的吹气速度,每个风口之间的角度以及风口数之间的关系。

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