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Effect of diboron trioxide on the crushing strength and smelting mechanism of high-chromium vanadium-titanium magnetite pellets
作者姓名:Gong-jin Cheng  Zi-xian Gao  He Yang  Xiang-xin Xue
作者单位:School of Metallurgy, Northeastern University, Shenyang 110819, China
基金项目:This work was financially supported by the National Key Technology Research and Development Program of the Ministry of Science and Technology of China;the National Program on Key Basic Research Project of China
摘    要:The effect of diboron trioxide (B2O3) on the crushing strength and smelting mechanism of high-chromium vanadium-titanium magnetite pellets was investigated in this work. The main characterization methods were X-ray fluorescence, inductively coupled plasma-atomic emission spectroscopy, mercury injection porosimetry, X-ray diffraction, metallographic microscopy, and scanning electron microscopy-energy-dispersive X-ray spectroscopy. The results showed that the crushing strength increased greatly with increasing B2O3 content and that the increase in crushing strength was strongly correlated with a decrease in porosity, the formation of liquid phases, and the growth and recrystallization consolidation of hematite crystalline grains. The smelting properties were measured under simulated blast furnace conditions; the results showed that the smelting properties within a certain B2O3 content range were improved and optimized except in the softening stage. The valuable element B was easily transformed to the slag, and this phenomenon became increasingly evident with increasing B2O3 content. The formation of Ti(C,N) was mostly avoided, and the slag and melted iron were separated well during smelting with the addition of B2O3. The size increase of the melted iron was consistent with the gradual optimization of the dripping characteristics with increasing B2O3 content.

关 键 词:high-chromium  vanadium-titanium  magnetite    pellets    diboron  trioxide    crushing  strength    smelting  mechanism

Effect of diboron trioxide on the crushing strength and smelting mechanism of high-chromium vanadium–titanium magnetite pellets
Gong-jin Cheng,Zi-xian Gao,He Yang,Xiang-xin Xue.Effect of diboron trioxide on the crushing strength and smelting mechanism of high-chromium vanadium-titanium magnetite pellets[J].International Journal of Minerals,Metallurgy and Materials,2017,24(11):1228-1240.
Authors:Gong-jin Cheng  Zi-xian Gao  He Yang  Xiang-xin Xue
Institution:1. School of Metallurgy, Northeastern University, Shenyang 110819, China;2. School of Metallurgy, Northeastern University, Shenyang 110819, China;Liaoning Key Laboratory of Recycling Science for Metallurgical Resources, Shenyang 110819, China
Abstract:The effect of diboron trioxide (B2O3) on the crashing strength and smelting mechanism of high-chromium vanadium-titanium magnetite pellets was investigated in this work.The main characterization methods were X-ray fluorescence,inductively coupled plasma-atomic emission spectroscopy,mercury injection porosimetry,X-ray diffraction,metallographic microscopy,and scarming electron microscopy-energy-dispersive X-ray spectroscopy.The results showed that the crushing strength increased greatly with increasing B2O3 content and that the increase in crushing strength was strongly correlated with a decrease in porosity,the formation of liquid phases,and the growth and recrystallization consolidation of hematite crystalline grains.The smelting properties were measured under simulated blast furnace conditions;the results showed that the smelting properties within a certain B2O3 content range were improved and optimized except in the softening stage.The valuable element B was easily transformed to the slag,and this phenomenon became increasingly evident with increasing B2O3 content.The formation of Ti(C,N) was mostly avoided,and the slag and melted iron were separated well during smelting with the addition of B2O3.The size increase of the melted iron was consistent with the gradual optimization of the dripping characteristics with increasing B2O3 content.
Keywords:high-chromium vanadium-titanium magnetite  pellets  diboron trioxide  crushing strength  smelting mechanism
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