高钛型高炉渣流变特性模拟实验
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国家高技术研究发展计划资助项目(2008AA031102)


A simulated experiment on the high titanium slag rheological behavior
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    摘要:

    高钛型高炉渣流变特性是影响钒钛磁铁矿高炉冶炼的重要因素,其对炉渣的排放、渣铁分离,甚至炉缸的寿命有重要作用.该研究采用高浓度的丙烯腈-丁二烯-苯乙烯共聚物(ABS)悬浮液模拟高钛型高炉渣体系,用NXS-11A型同轴圆筒旋转黏度计测量其表观黏度,研究了温度、颗粒体积分数及颗粒粒度等因素对悬浮液表观黏度的影响.结果表明:温度和颗粒体积分数对悬浮液的表观黏度影响明显,颗粒粒度对悬浮液表观黏度影响较弱.在较宽的颗粒浓度范围内悬浮液符合Bingham塑性体,并得到了表观黏度与温度和体积分数的二元函数关系式.

    Abstract:

    The rheological property of high titanium slag is a main factor to influence the vanadium titanomagnetite smelting in blast furnace. It plays a great role in discharging slag, separating iron and slag and even the life of blast furnace hearth. The acrylonitrile-butadiene-styrene multipolymer(ABS) dense suspension is taken to simulate the system of high titanium slag. Apparent viscosity is measured by a NXS-11A rotating cylinder viscometer. The impact of temperature, volume fraction and particle sizes on the suspension apparent viscosity is studied. The results show that temperature and volume fraction have a strong influence on the suspension apparent viscosity, while the particle size has a weak effect. The suspension shows Bingham behavior within a wide concentration range. The dependence of the appear viscosity on temperature and amount of solid addition can be described by a binary function equation.

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白晨光,黄润,邱贵宝,于要伟,潘成,毛磊.高钛型高炉渣流变特性模拟实验[J].重庆大学学报,2011,34(3):64-68.

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  • 收稿日期:2010-09-05
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