在浇注钢包中注射脱氧剂的工艺参数的测定

K. Niziaiev, V. Khotiun
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摘要

工作目的。确定粉末试剂注射的气体动力学参数,为粉末铁合金在填充钢包中深入金属注射提供高性能操作装置。研究方法。对文献资料进行了分析回顾,其结果可以说证实了粉末试剂注入钢包的优势,与传统的脱氧和合金化技术相比。基于适用于特定工艺条件的知名数学模型,进行了数学建模,其中考虑了对该工艺重要的一些参数,特别是粉末同化程度和载气的承载能力。结果。在数学建模的基础上,通过数学建模确定了粉末锰铁注入充液钢包的合理模式及其分数大小,既能保证粉末颗粒被金属熔体高度同化,又能防止粉末颗粒在管道壁上沉积。科学的新奇。根据数学模型的结果,明确了气悬浮射流与液态金属熔体相互作用的特点。实用价值。从脱氧动力学的角度出发,确定了铁合金粉末过程的气体动力学参数,保证了钢包内钢的脱氧和合金化性能,保证了粉末深入金属的喷枪和喷嘴的可靠运行以及颗粒与金属的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of process parameters for the injection of deoxidizing agents in a teeming ladle
Purpose of work . Determination of the gas-dynamic parameters of the injection of powdered reagents to provide high-performance operation of devices for powder ferroalloys injection deep into the metal in a teeming ladle. Research methods. An analytical review of literary sources has been carried out, the results of which have arguably confirmed the advantage of the powder reagents injection into the ladle in comparison with traditional deoxidation and alloying technologies. Based on well-known mathematical models adapted to specific technologi-cal conditions, mathematical modeling has been carried out, which takes into account a number of parameters important for the technology, in particular, the degree of powder assimilation and the carrying capacity of the carrier gas. Results. Based on the results of mathematical modeling, the rational modes of powdered ferromanganese injection into the teeming ladle and the size of its fraction, which provides both a high assimilation degree of powder particles by a liquid metal melt and prevents the deposition of powder particles on the walls of the pipeline have been determined by mathematical modeling. Scientific novelty. Based on the results of mathematical modeling, the peculiarities of the interaction of a gas suspension jet with liquid metal melts have been specified. Practical value. The gas-dynamic parameters of the process of of powdered ferroalloys are determined, which provide high performance of the deoxidation and alloying of steel in the teeming ladle, reliable operation of lances and nozzles for powders injection deep into the metal and interaction of particles with metal, necessary from the point of view of deoxidation kinetics.
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