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作 者:赵定国 支保宁 张福君 郝华强[3] 王书桓 张印棠 Zhao Dingguo;Zhi Baoning;Zhang Fujun;Hao Huaqiang;Wang Shuhuan;Zhang Yintang(College of Metallurgy and Energy,North China University of Science and Technology;Tangshan Key Laboratory of Special Metallurgy and Materials Manufactory;Tangshan Iron and Steel Co,HBIS)
机构地区:[1]华北理工大学冶金与能源学院,河北唐山063009 [2]唐山市特种冶金及材料制备重点实验室 [3]唐山钢铁公司
出 处:《特种铸造及有色合金》2020年第2期165-168,共4页Special Casting & Nonferrous Alloys
基 金:国家自然科学基金资助项目(51774139)。
摘 要:采用流场数值模拟软件模拟了转炉熔渣溅渣护炉气化脱磷过程,探究了熔池深度和熔渣粘度对熔池流动的影响。结果表明,熔池深度越深,越有利于湍动能转换率的提高和熔池内的混匀,优化流场。死区占比随熔渣粘度的增高而增大,所以相应在高粘度深熔池中,需要增加喷吹时间才能使熔池达到稳定、均匀的效果。The numerical simulation was adopted to simulate the process of blowing gas into converter slag before slag splashing protection by a software.The influence of molten pool depth and slag viscosity on the flow of the molten pool was analyzed.The simulated results show that the deepening of the molten pool is conducive to the enhancement of turbulent kinetic energy conversion rate and the homogenization of the molten pool,and to the optimization of the flow field.The slag viscosity has a great influence on the dead zone ratio.The dead zone ratio is increased with the increase of the slag viscosity.Therefore,it is necessary to increase the injection time to make the molten pool stable and uniform in the deep melting pool with high viscosity.
分 类 号:TG142.33[一般工业技术—材料科学与工程] TG132.3[金属学及工艺—金属材料]
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