针对铝电解槽内熔体旋转流动的特点,提出使用涡量和旋转强度来对其涡结构进行定量解析,并以某300kA槽电解质流场为研究对象,使用CFX12软件平台进行数值模拟。结果表明:极间水平截面和阳极间缝垂直截面的旋转强度最大值分别为1.611和1.96...针对铝电解槽内熔体旋转流动的特点,提出使用涡量和旋转强度来对其涡结构进行定量解析,并以某300kA槽电解质流场为研究对象,使用CFX12软件平台进行数值模拟。结果表明:极间水平截面和阳极间缝垂直截面的旋转强度最大值分别为1.611和1.961 s 1,其绝对涡量最大值分别为4.002和3.391 s 1;阳极气泡的搅动使阳极周围电解质中成对出现反向对称小涡;而电磁力的不均匀性导致部分阳极底部出现不对称大涡;阳极中缝和间缝相交位置的绝对涡量超过4 s 1,在该位置布置下料点有利于氧化铝的分散。故运用涡分析法能得到更为丰富和精确的流场信息,为槽结构的设计提供理论指导。展开更多
The densification and microstructure of different spinelized magnesium aluminate spinels(MAS) were studied adding Sc_2O_3 as additive. Sintered products were then characterized in terms of densification, phase analy...The densification and microstructure of different spinelized magnesium aluminate spinels(MAS) were studied adding Sc_2O_3 as additive. Sintered products were then characterized in terms of densification, phase analysis, quantitative elemental analysis and microstructure. The results show that Sc_2O_3 is found to be beneficial for the densification of MAS. Sc_2O_3 has a more significant effect on the densification of partially spinelized MAS batch than that of fully spinelized MAS batch. At the sintering temperature of 1650 °C, the bulk density of sintered products of partially spinelized powders increases by 0.243 g/cm3 as the Sc_2O_3 content increases from 0 to 4%(mass fraction) and that of fully spinelized powder increases by 0.14 g/cm3. Compared with the sintered samples prepared from the fully spinelized powder, the sintered samples using the partially spinelized powders as raw materials have more compact microstructures.展开更多
文摘针对铝电解槽内熔体旋转流动的特点,提出使用涡量和旋转强度来对其涡结构进行定量解析,并以某300kA槽电解质流场为研究对象,使用CFX12软件平台进行数值模拟。结果表明:极间水平截面和阳极间缝垂直截面的旋转强度最大值分别为1.611和1.961 s 1,其绝对涡量最大值分别为4.002和3.391 s 1;阳极气泡的搅动使阳极周围电解质中成对出现反向对称小涡;而电磁力的不均匀性导致部分阳极底部出现不对称大涡;阳极中缝和间缝相交位置的绝对涡量超过4 s 1,在该位置布置下料点有利于氧化铝的分散。故运用涡分析法能得到更为丰富和精确的流场信息,为槽结构的设计提供理论指导。
基金Project(51374240) supported by the National Natural Science Foundation of ChinaProject(2012BAE08B02) supported by the National Science and Technology Pillar Program of China
文摘The densification and microstructure of different spinelized magnesium aluminate spinels(MAS) were studied adding Sc_2O_3 as additive. Sintered products were then characterized in terms of densification, phase analysis, quantitative elemental analysis and microstructure. The results show that Sc_2O_3 is found to be beneficial for the densification of MAS. Sc_2O_3 has a more significant effect on the densification of partially spinelized MAS batch than that of fully spinelized MAS batch. At the sintering temperature of 1650 °C, the bulk density of sintered products of partially spinelized powders increases by 0.243 g/cm3 as the Sc_2O_3 content increases from 0 to 4%(mass fraction) and that of fully spinelized powder increases by 0.14 g/cm3. Compared with the sintered samples prepared from the fully spinelized powder, the sintered samples using the partially spinelized powders as raw materials have more compact microstructures.