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首页> 外文期刊>ISIJ international >Effect of Slag Composition on the Oxidation Kinetics of Alloying Elements during Electroslag Remelting of Stainless Steel: Part-1 Mass-transfer Model
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Effect of Slag Composition on the Oxidation Kinetics of Alloying Elements during Electroslag Remelting of Stainless Steel: Part-1 Mass-transfer Model

机译:渣组成对不锈钢电渣重熔过程中合金元素氧化动力学的影响:第1部分传质模型

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摘要

A new mathematical model for the computation of concentration changes occurring in electroslag remelting is proposed in order to study the oxidation behavior of titanium, aluminum, silicon in stainless steel. The solutions of the mass transfer are simultaneously calculated by penetration theory and film theory. In order to make the each system of Al+Al_(2)O_(3), Si+SiO_(2), Ti+TiO_(2) and Fe+FeO reach the thermodynamic equilibrium at the slag-metal interface in the model, the molarity of FeO at the interface is employed, and then calculated by mass transfer balance for oxygen element. The ion and molecule coexistence theory is employed to investigate the effect of slag composition on the change of each alloying element. At the process of liquid metal film formation, metal droplet passing though the molten slag and metal pool, the fluxion of molten slag was considered into the mass transfer coefficient. Finally, the model was established using the software of Matlab. In theory, this model is suitable for all the chemical reaction of each element during the ESR process, and determines the change of concentration of each component both in metal and slag.
机译:为了研究钛,铝,硅在不锈钢中的氧化行为,提出了一种计算电渣重熔中浓度变化的新数学模型。通过渗透理论和薄膜理论同时计算了传质的解。为了使模型中的Al + Al_(2)O_(3),Si + SiO_(2),Ti + TiO_(2)和Fe + FeO的各个系统在炉渣-金属界面达到热力学平衡,利用界面处的FeO摩尔浓度,然后通过传质平衡计算氧元素。离子和分子共存理论被用来研究炉渣成分对每种合金元素变化的影响。在液态金属膜形成过程中,金属滴通过熔渣和金属熔池,熔渣的通量被视为传质系数。最后,使用Matlab软件建立了模型。从理论上讲,该模型适用于ESR过程中每种元素的所有化学反应,并确定金属和矿渣中每种成分的浓度变化。

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