Modernization of continuous casting machines with the purpose of increasing of finished product quality

S. Shakhov, D. Shakhov
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Abstract

To prevent formation or suppress development of crystallization,shrink and liquating defects different methods of physical impact on setting melt are used. For technology selection in every case economy, efficiencyand ecological norms should be considered first of all.Methods of physical impact on crystallizable billet considered: electro-hydro impulse impact, gas-impulse stirring, modifier input, inoculator input, consumable coolers input, ultrasonic impact, “soft” reduction, electromagnetic stirring (EMS).Due to authors’ opinion, EMS of liquid portion of a CC billet is the most effective method ofactive impact on crystallization process of a CC billet directly during casting resulted in a guarantee possibility to control the process of structure formation. At present in world practice the EMS of liquid metal at CC machines became an integral part of advanced technology of high quality billets obtaining. The requirements increase to products qualityand development of effective methods and means of melts electromagnetic processing resulted in a requirement of obligatory EMS usage when producing products of high quality steels.It was shown, that for a number of CC bullet macrostructure defects, arising from crystallization process, shrinkage and liquating phenomena, which can not be eliminated completely even at optimal CC machinesdesign features and rational technology parameters of CC process, additional methods of physical impact on the liquid metal setting needed. The method to be used depends on the CC technology and existing CC machines equipment.
以提高成品质量为目的的连铸机现代化
为了防止形成或抑制结晶、收缩和液化缺陷的发展,采用了不同的物理冲击凝固熔体的方法。在任何情况下的技术选择都应该首先考虑经济、效率和生态规范。考虑对可结晶方坯的物理影响方法:电水冲击、气体冲击搅拌、改性剂输入、孕育剂输入、耗材冷却器输入、超声波冲击、“软”还原、电磁搅拌(EMS)。认为在连铸过程中直接对连铸坯结晶过程产生积极影响的最有效方法是对连铸坯液部的EMS,为控制连铸坯组织形成过程提供了保证。目前在世界各国的实践中,连铸机液态金属的EMS已成为获得高质量钢坯先进技术的重要组成部分。随着对产品质量要求的提高和熔体电磁加工有效方法和手段的发展,要求在生产高质量钢材产品时必须使用EMS。结果表明,由于结晶过程、收缩和液化现象引起的一些连铸弹宏观组织缺陷,即使在最优连铸机的设计特点和合理的连铸工艺参数下也不能完全消除,需要采用物理影响液态金属凝固的方法。所采用的方法取决于CC技术和现有的CC机器设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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