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On Increasing Mn Recovery During Production of Mn-Based Stainless Steel

机译:跨越Mn基不锈钢生产过程中的MN恢复

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Recovery of Mn in steel making process depends on various processing parameters such as temperature, flow rate ratio of oxygen and argon gas in AOD process, carbon content, slag basicity, and V-ratio, Si content etc. The effect of these process parameters on Mn recovery in Mn-based stainless steel production is studied and optimized to maximize Mn recovery. It is observed that highest Mn recovery is achieved when slag basicity is maintained in the range of 1.7-1.8 and V-ratio is kept at 1.5. Further, it is noted that at high temperature, recovery of Mn is less because loss of Mn due to oxidation increases exponentially with the increase in temperature. Maximum Mn recovery is observed at 1585 A degrees C bath temperature. Reduction of MnO with coke forms CO2 gas and free Mn in the melt. To maximize recovery of Mn in stainless steel, it is of paramount importance that oxidation of Mn is reduced and reduction of MnO is accelerated. Oxidation of Mn is minimized by reducing the flow rate of oxygen and reduction of MnO is accelerated by adding adequate amount of coke to the molten charge.
机译:钢制造过程中Mn的恢复取决于各种加工参数,例如AOD过程中氧气和氩气的温度,流速比,碳含量,渣碱度和V比,Si含量等。这些过程参数的效果研究了Mn的不锈钢生产中的Mn恢复,并优化以最大化Mn恢复。观察到,当炉渣碱度保持在1.7-1.8的范围内时,实现了最高的Mn恢复,并且V比保持在1.5。此外,注意到,在高温下,恢复Mn是较少的,因为由于氧化导致的Mn损失随温度的增加而呈指数呈指数。在1585℃浴温下观察到最大Mn恢复。用焦炭还原MnO在熔体中形成CO 2气体和游离MN。为了最大化不锈钢中Mn的恢复,它至关重要,即加速了Mn的氧化和减少MnO的氧化。通过降低氧气的流速最小化Mn的氧化,通过添加足够的焦炭来加速MnO的减少来加速熔融电荷。

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