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机构地区:[1]攀枝花学院资源与环境工程学院,四川攀枝花617000
出 处:《有色金属工程》2016年第6期50-54,共5页Nonferrous Metals Engineering
基 金:国家大学生创新创业训练计划项目--攀钢含钛高炉渣熔化性温度及流动特性的实验研究(2015cxcy063)
摘 要:以攀枝花高钛型高炉渣为主要原料,采用正交试验设计法研究了高炉渣主要组分(CaO/SiO_2(二元碱度R2)、TiO_2、Al_2O_3、Mg O)对其半球点温度、流动温度及黏度的影响。结果表明,高炉渣主要组分对其半球点温度影响的大小顺序为:R2>TiO_2>Mg O>Al_2O_3;对流动温度的影响顺序为:Al_2O_3>R2>Mg O>TiO_2;对黏度的影响顺序为:R2>Al_2O_3>TiO_2>Mg O;随着碱度R2增加,熔化温度及黏度呈先升高后降低的规律;随着TiO_2含量的增加,熔化温度呈先升高后略有降低的趋势,黏度呈先降低后增加的趋势;随着Al_2O_3含量增加,半球点温度呈先减小后增大的趋势,流动温度大致呈逐渐增大的趋势,黏度呈先降低后升高再降低的变化趋势;随着MgO含量的增加,熔化温度有一定的降低,黏度呈先升高后降低的趋势。Using titanium-bearing blast furnace slag from Panzhihua as raw materials, the effects of main components ( CaO/SiO2 , TiO2 , Al2O3 , MgO) on melting characteristics and viscosity properties were studied through orthogonal design in this paper. The results show that the order of various factors affecting on slag's hemisphere point temperature is R2 〉 TiO2 〉 MgO 〉 Al2O3 ; that on flowing temperature is Al2O3 〉 R2 〉 MgO 〉 TiO2 , and that on viscosity is R2 〉 Al2O3 〉 TiO2 〉 MgO. The melting temperature increases with the increasing of alkalinity and TiO2content and then decreases, however, the temperature continuously decreases with the increasing of MgO content in the experiment range. The viscosity increases with the increasing of alkalinity and MgO content and then decreases. With the increasing of TiO2 content and MgO content, the viscosity decreases firstly, then increases. With the increasing of Al2O3content, the slag's hemisphere point temperature decreases at first then increases, and the flowing temperature decreases a bit.
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