首页> 外文期刊>Archives of Metallurgy and Materials >EAF-FOAMY SLAG IN STAINLESS STEEL PRODUCTION NEW EXTREMELY EFFICIENT TECHNOLOGY EASY TO HANDLE AND COST-EFFICIENT
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EAF-FOAMY SLAG IN STAINLESS STEEL PRODUCTION NEW EXTREMELY EFFICIENT TECHNOLOGY EASY TO HANDLE AND COST-EFFICIENT

机译:钢铁生产中的电弧炉渣极易处理且经济高效的新技术

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Economy of the electric arc furnace technology is strongly dependent on the efficiency of electrical energy introduced into the metal bath. Slag foaming practice for carbon steel grades has since long time its daily application but for stainless steels not successfully yet. Production cost lowering is achieved by improved thermal efficiency and operation conditions by stabilizing of the arc activity. In consequence of such technology the refractory and electrode consumption as well as noise level is perceptible decreased. All these effects can be now achieved at the stainless steel production thanks a new patented technology of SMS Demag AG / Germany developed in common work with the AGH-University of Science and Technology in Krakow /Poland and tested industrially by Acesita S.A./ Brazil. The new technology distinguishes fundamentally in comparison with all known applied and trialled technologies working on the basis of injection procedure. The special prepared briquettes are used as reacting agent on the slag and metal phase boundary forming carbon monoxide and dioxide necessary for the foaming effect. This idea was first tested in laboratory at EAF conditions. Suitable viscosity of the slag was tested according to the normal production conditions.Controlled high foaming level covering completly the electric arc allows application highest transformer taps resulting in longer electric arcs and high temperature gradient in the range of 13-14 K/min.
机译:电弧炉技术的经济性在很大程度上取决于引入金属熔池的电能效率。碳钢牌号的矿渣发泡实践已长期使用,但是对于不锈钢而言却尚未成功。通过稳定电弧活性,提高了热效率和运行条件,从而降低了生产成本。由于这种技术,耐火材料和电极消耗以及噪音水平明显降低。通过与德国AMS科学技术大学共同合作开发并由Acesita S.A./巴西进行工业测试的SMS A /德国Desm公司的一项新专利技术,现在可以在不锈钢生产中实现所有这些效果。与所有已知的基于注射程序的应用和试验技术相比,该新技术在根本上与众不同。特殊制备的团块用作炉渣和金属相边界上的反应剂,形成起泡作用所需的一氧化碳和二氧化碳。这个想法首先在实验室的EAF条件下进行了测试。根据正常生产条件测试了炉渣的合适粘度。受控的高发泡水平完全覆盖了电弧,允许使用最高的变压器抽头,从而导致更长的电弧和13-14 K / min的高温梯度。

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