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转炉复吹过程分散相界面积的定量计算
引用本文:杨春光,陈韧,邹宗树.转炉复吹过程分散相界面积的定量计算[J].中国冶金,2008,18(6):21-21.
作者姓名:杨春光  陈韧  邹宗树
作者单位:1.东北大学材料与冶金学院,辽宁 沈阳 110004;2.辽宁科技学院,辽宁 本溪 117022
摘    要:由分形理论余维相加定律,利用分散相覆盖分维数及投影关系,计算转炉复吹过程各边界条件下乳化液滴分散相的界面积。结果表明,钢滴分散相界面积主要受到顶吹条件影响,渣滴分散相界面面积受到顶底吹共同作用的影响,底吹强度的变化会明显改变渣滴分散相界面的面积。

关 键 词:转炉    水模型    分散相    分维数    界面面积  

Quantitative Calculation of Interface Area on Dispersed Phase in Combine-Blowing Process Converter With Water Modeling
YANG Chun-guang,CHEN Ren,ZOU Zong-shu.Quantitative Calculation of Interface Area on Dispersed Phase in Combine-Blowing Process Converter With Water Modeling[J].China Metallurgy,2008,18(6):21-21.
Authors:YANG Chun-guang  CHEN Ren  ZOU Zong-shu
Affiliation:YANG Chun-guang, CHEN Ren, ZOU Zong-shu (1. School of Materials and Metallurgy, Northeastern University, Shenyang 110004, Liaoning, China; 2. Liaoning Institute of Science and Technology, Benxi 117022, Liaoning, China)
Abstract:According to the law of additive codimensions and projective geometry, the interface area on dispersed phase in converter blowing process was calculated quantitatively. The results show that the interface of molten dispersed phase steel was influenced primarily by top blowing and the interface of slag dispersed phase is influenced by combine blowing. The bottom blowing has notable influence.
Keywords:combined-blowing converter  water modeling  dispersed phase  fractal dimension  interface area
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