Steel degassing in continuous steel melting units

Viacheslav A. Murashov, Konstantin V. Strogonov, Andrey A. Borisov, Dmitry D. Lvov
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Abstract

The requirements for the quality of steel products dictate the need to increase the share of evacuated steel. In addition, the growing cost of fuel, as well as the desire of society and the state to decarbonize various industries, including ferrous metallurgy, requires companies to reduce fuel costs and switch to more modern and cleaner technologies. Reducing the specific fuel consumption, and, accordingly, emissions, is possible due to the transition to continuous production, minimizing the cost of heating the equipment and maintaining the set temperature in the degasser during technological downtime. The article deals with the issues of steel melt degassing in U-type continuous degassers in continuous steel making units. Aim. To consider the influence of rarefaction of a gas bubble on the characteristic size over the melt, speed and time of its surfacing in a U-type degassing unit. Based on the obtained dependences, to determine the characteristic size of a vacuum chamber and energy effect of switching to a continuous vacuumization. Methods.. Results. The authors have determined a bubble characteristic size in a steel melt under vacuum of different degrees. They studied the effect of vacuum on vacuumization speed and the degassing unit dimensions. The energy effect of switching to continuous vacuumization was determined. The proposed methodology is valid for liquid media, the calculations are presented on the example of molten steel. Based on the conducted calculations, the depression influence on molten steel vacuumization was determined. The vacuum chamber dimensions, comparable with RH-vacuum cleaners presented at the market of similar productivity and quality of finished products, as well as reducing energy consumption for steel degassing in a continuous vacuum degasser, compared with the existing circulating installation, were determined.
连续炼钢装置中的钢材脱气
对钢铁产品质量的要求决定了必须增加疏解钢的份额。此外,燃料成本的不断增长,以及社会和国家对包括黑色冶金在内的各行各业去碳化的渴望,都要求企业降低燃料成本,转而采用更现代、更清洁的技术。由于向连续生产过渡,最大限度地降低了设备加热成本,并在技术停机期间保持脱气机的设定温度,因此可以降低特定燃料消耗,从而减少排放。本文讨论了连续炼钢装置中 U 型连续脱气机的钢水脱气问题。目的是考虑气泡稀释对 U 型脱气装置中钢水特性尺寸、速度和浮出时间的影响。根据所获得的相关性,确定真空室的特征尺寸以及转为连续抽真空的能量效应。方法结果作者确定了不同真空度下钢水中气泡的特征尺寸。他们研究了真空度对抽真空速度和脱气装置尺寸的影响。还确定了转为连续抽真空的能量效应。提出的方法适用于液体介质,计算以钢水为例。根据计算结果,确定了凹陷对钢水抽真空的影响。确定了真空室的尺寸,可与市场上生产率和成品质量类似的 RH 真空清洁器相媲美,并与现有的循环装置相比,降低了连续真空脱气机的钢水脱气能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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