复吹转炉底吹喷粉的物理模拟  被引量:4

Physical Simulation of Bottom Powder Injection in Combined Blown Converter

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作  者:唐彪[1] 何奕波[1] 邹宗树[1] 余艾冰[1,2] 

机构地区:[1]东北大学材料与冶金学院,辽宁沈阳110819 [2]新南威尔士大学材料科学与工程学院

出  处:《东北大学学报(自然科学版)》2014年第2期236-240,共5页Journal of Northeastern University(Natural Science)

基  金:国家自然科学基金资助项目(51104037;51374062)

摘  要:建立了底吹喷吹石灰石粉的冷态模型:用水模拟钢水,用浸盐的空心Al2O3模拟石灰石粉,用真空泵油模拟炉渣,研究了复吹转炉底吹喷粉的重要参数粉剂分布和粉剂穿透比.考察了不同底吹布置条件下的粉剂分布,利用图像处理法确定了最佳的底吹布置方式.在最佳底吹布置方式条件下,考察了不同固气比和粉剂粒度对粉剂穿透比的影响;结果表明穿透比随固气比和粉剂粒度的增加而增加,确定了实验条件下最佳固气比为30~40,粉剂粒度为0.212~0.380mm.A cold model of top and bottom blown converter with bottom powder injection was established to investigate the powder distribution and penetration ratio in melt bath. Water, salt- coated hollow alumina particles and vacuum-pump oil were used to simulate liquid steel, limestone powder and slag, respectively. The powder distribution under different bottom blowing arrangements was studied by using the image processing method to find out the optimum bottom tuyere arrangement. With the optimum bottom tuyere arrangement, the effects of solid/gas ratio and powder particle size on powder penetration ratio were studied. The results show that the powder penetration ratio increases with the increase of solid/gas ratio and powder particle size. Under the laboratory conditions, the solid/gas ratio of 30 -40 and the powder particle size 0. 212 - 0. 380 mm are suggested.

关 键 词:转炉 底吹喷粉 粉剂分布 粉剂穿透比 固气比 粉剂粒度 

分 类 号:TF748.21[冶金工程—钢铁冶金]

 

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