用硅还原铁液

R. Sakagami, Chitoshi Kawasaki, I. Suzuki, Keiji Sato
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引用次数: 2

摘要

摘要:根据实验A、B、c得到的各种事实,研究了铁液与Si的脱氧机理。研究了添加金属硅后,铁液中氧含量的变化以及夹杂物的形状和尺寸分布。实验B;研究了脱氧剂Si或Si- al迅速均匀溶解后的生长过程和脱氧产物的组成。实验C;研究了SiO2坩埚中氧气溶入铁液的机理。所得结果总结如下:1)在加入Si后,SiO2的形成并没有立即完成,因此铁液中的过饱和直到达到平衡才会发生。2)得出结论:氧化颗粒的生长或脱氧反应不是由溶质原子的扩散控制的,而是由颗粒表面的反应速率控制的,即使在炼钢温度下,颗粒表面也不能维持局部平衡。3)通过实验b中Si- al脱氧产物的组成估算出Si+2OSiO2, 2Al+3O2Al2O3反应速率常数的比值,该比值在铁液中铝、硅和氧的浓度范围内都是恒定的。4)在实验A中,加入硅5分钟后,大部分原生包裹体迅速浮出,总氧与溶解氧基本一致。5)从氧化物颗粒的形核和生长的角度探讨了凝固过程中夹杂物形成的机理。(1968年12月27日收到)
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Deoxidation of Liquid Iron with Silicon
Synopsis: The mechanism on the deoxidation of liquid iron with Si was studied on the basis of the various facts obtained by the experiments A, B, and C. Experiment A; An investigation was made on the change of the oxygen content in liquid iron and the shape and the size distribution of the inclusion, after addition of metallic Si. Experiment B; The process of growth and the composition of the deoxidation products were studied , after the prompt and homogeneous dissolution of deoxidizer Si or Si-Al. Experiment C; The mechanism of dissolution of oxygen from the SiO2 crucible into liquid iron was studied. The results obtained were summarized as follows. 1) The formation of SiO2 is not completed immediately after addition of Si and consequently the supersaturation in liquid iron occurs until the equilibrium is reached. 2) It was concluded that the growth of the oxide particle or the deoxidation reaction was not controlled by the diffusion of the solute atom, but the reaction rate at the particle surface, and in general the local equilibrium was not maintained there even at steelmaking temperature. 3) The ratio of the rate constant for the reaction Si+2OSiO2, 2Al+3O2Al2O3 was estimated by means of the composition of the products obtained by the Si-Al deoxidation in the experiment B. The ratio was constant in a wide range of the concentration of aluminium, silicon and oxygen in liquid iron. 4) In the experiment A, the greater part of the primary inclusion floats out rapidly and the total oxygen agrees nearly with the dissolved oxygen 5 minutes after addition of silicon. 5) The mechanism on the formation of the inclusion during solidification was discussed from the point of view of nucleation and growth of the oxide particle. (Received Dec. 27, 1968)
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