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Interfacial Phenomena in Metal–Slag–Gas System during AOD Process

机译:AOD过程中金属-炉渣-气体系统中的界面现象

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Significance of interfacial phenomena and properties such as surface tension are essential in iron and steelmaking processes due to chemical reactions occurring on the interfaces including elements transfer through the phase boundaries. In this study, the influences of surface tensions of slag and metal and interfacial tension between slag and metal on the behavior of metal–slag–gas system were analysed based on the energy bound to system surfaces. Effects of reactions between slag and steel on the behavior of metal–slag–gas system during AOD process were evaluated by two cases: evaluation of top slag–steel melt system and single bubble rising in the metal bath.Simulations for metal–top slag system show that there are no possibilities to form metal film around the gas bubbles when they penetrate through metal–slag interface. Behavior of system is also independent of intensity of reactions between slag and steel. According to the calculations during intensive metal–slag reactions metal droplets are disintegrated more easily into top slag layer. If there are no metal–slag reactions metal droplets are attached into the gas bubbles.Calculations prove that, when reactive oxygen gas bubble forming oxides is injected into steel bath, slag film can be formed around the gas bubble if the intensity of reactions between the slag and the metal is high. During effective oxidation reactions at the vicinity of nozzles formed micro slag is attached with the rising gas bubble.
机译:由于在界面上发生化学反应,包括元素通过相界转移,因此界面现象和特性(例如表面张力)的重要性在钢铁制造过程中至关重要。在这项研究中,基于系统表面的能量,分析了炉渣和金属的表面张力以及炉渣和金属之间的界面张力对金属-炉渣-气体系统行为的影响。两种情况评估了炉渣和钢之间的反应对金属-炉渣-气体系统行为的影响:两种情况:顶炉渣-钢水熔融系统的评估和金属熔池中单气泡的上升。表明当气泡穿过金属-熔渣界面时,不可能在气泡周围形成金属膜。系统的行为也与炉渣和钢之间的反应强度无关。根据高强度金属-炉渣反应期间的计算,金属滴更容易分解成炉渣顶层。如果没有金属与炉渣的反应,气泡中会附着金属滴。计算证明,当将活性氧气泡形成氧化物注入钢水浴中时,如果炉膛之间的反应强度较大,则会在气泡周围形成炉渣膜。炉渣且金属含量高。在喷嘴附近进行有效的氧化反应期间,形成的微渣与上升的气泡相连。

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