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Basic oxygen furnace based steelmaking processes and cleanliness control at Baosteel

机译:基于基于氧气炉的炼钢工艺和宝钢的清洁度控制

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摘要

Optical microscopy, total oxygen measurements and slime tests have been conducted to quantify the size distribution and amount of inclusions at various processing steps during basic oxygen furnace (BOF) beteed steel production at Baosteel. The effects on steel cleanliness of specific operational improvements during steel refining and continuous casting have been investigated. Such improvements to these processes and the resulting level of steel cleanliness at Baosteel are summarised in the present paper. Ladle slag reduction lowers FeO + MnO in the slag to below 5 percent, decreasing steel reoxidation by the slag. Calcium treatment by CaSi wire injection during ladle furnace (LF) refining is used to modify inclusions and improve submerged entry nozzle (SEN) clogging. Slag detection is employed at the ladle bottom during continuous casting. Flow control devices, CaO containing filters and high CaO based basic powder with CaO/SiO_2>4 are used in the tundish to remove more inclusions. Several improvements to the castability and in the attainment of clean steel at mould operations have also been made. With this BOF based steelmaking process, impurity levels can be controlled to achieve total oxygen (TO)<16 ppm, [S]<5 ppm, [P]<35 ppm, [N]<29 ppm, [H]<1 ppm in line pipe steels, and [C]<16 ppm, TO<19 ppm, [N]<15 ppm in interstitial free (IF) steels.
机译:已经进行了光学显微镜,总氧气测量和粘液试验,以量化在Baosteel基本氧气炉(BOF)的各种加工步骤中的尺寸分布和夹杂物的量。研究了对钢精炼和连续铸造过程中特定操作改进的钢清洁度的影响。本文总结了对这些过程的这种改进以及Baosteel的钢制清洁水平。钢包渣在渣中降低了Feo + MnO至低于5%,通过炉渣降低钢材再氧化。填充炉(LF)炼油期间Casi线注射的钙处理用于修饰夹杂物,改善浸没式入口喷嘴(SEN)堵塞。在连续铸造期间,在钢包底部采用炉渣检测。流量控制装置,含CaO的过滤器和带Cao / SiO_2> 4的高CaO基的基本粉末用于中间包中以去除更多夹杂物。还制造了对可塑造性和在模具操作中达到清洁钢的几个改进。利用这种基于BOF的炼钢工艺,可以控制杂质水平以实现总氧(至)<16ppm,[S] <5ppm,[P] <35ppm,[n] <29ppm,[H] <1ppm在线管钢中,[C] <16 ppm,在间隙(IF)钢中的<19 ppm,[n] <15 ppm。

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