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Improvement of RH refining technology for production of ultra-low carbon steel at kwangyang works, posco

机译:浦项制铁光阳工厂生产超低碳钢的RH精炼技术的改进

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Experimental and theoretical studies were carried out to understand the effects of operational conditions(flow rate of lift gas, vacuum degree, snorkel diameter and oxygen top blowing) on the decarburisation characteristics in 250ton RH vacuum deagsser. From the tests for complete mixing time measurement with Cu tracer, increase in flow rate of lift gas or higher vacuum degree was effective to reduce complete mixing time. However, the effect of snorkel inner diameter was not observed. Decarburisation characteristics for refining ultra-low carbon steel were enhanced by the increase of snorkel diameter. Lift gas injection through directional type porous plugs increased apparent decarburisation rate(Kc) and reduced decarburisation time while producing ultra-low carbon steel.
机译:进行了实验和理论研究,以了解操作条件(提升气体的流量,真空度,通气管直径和氧气顶吹)对250吨RH真空脱气机的脱碳特性的影响。从使用Cu示踪剂进行完全混合时间测量的测试中,提高提升气体的流速或提高真空度可以有效减少完全混合时间。但是,未观察到通气管内径的影响。呼吸管直径的增加增强了精炼超低碳钢的脱碳特性。通过定向型多孔塞提升气注,可提高表观脱碳率(Kc),并减少脱碳时间,同时生产超低碳钢。

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