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220 mm×1600 mm板坯连铸浸入式水口倾角优化的数值模拟和应用 被引量:3

Numerical Simulation on Optimization of Inclination of Submerged Nozzle for 220 mm × 1 600 mm Slab Casting and Application
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摘要 使用数值模拟方法研究了拉速0.9m/min时,水口倾角-7°^-11°对220 mm×1600 mm板坯结晶器内坯壳厚度、坯壳温度和自由液面流动的影响。模拟和应用结果得出,以拉速0.8 m/min,水口倾角-15°工艺下钢液流动为标准,通过对比计算结果与标准工艺曲线,确定在0.9 m/min拉速时,水口倾角为-11°为最佳工艺方案。生产应用结果表明,采用优化工艺后结晶器窄面报警频率由原15次/月降至0次/月,铸坯表面质量也有一定改善。 The effect of inclination of submerged nozzle -7°- - 11 ° with casting speed 0. 9 m/rain on shell thick- ness, shell temperature and free surface flow in mold for 220 mm - 1 600 mm slab has been studied by numerical simulation method. The simulation and application results show that taking liquid steel flow with casting speed 0. 8 m/min and inclina- tion of nozzle -15° as criterion and compared calculation resuhs with criterion process curves the optimizing process scheme is nozzle inclination - 11 ° with casting speed 0. 9 m/min. Commercial production application results show that after using the optimization process the mold norrow face alarm rate of recurrence per month from 15 times to 0 time and the qual- ity of cast slab surface has definite improvement.
出处 《特殊钢》 北大核心 2018年第1期9-12,共4页 Special Steel
关键词 220 mm×1 600 mm板坯 连铸 结晶器 浸入式水口 倾角 数值模拟 220 mm × 1 600 mm Slab, Continuous Casting, Mold, Submerged Nozzle, Inclination, Numerical Simulation
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