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铝电解槽石墨化阴极和槽壳的变形
引用本文:王维,薛济来,朱骏,冯鲁兴,李吉刚,牛庆仁,何华,韩立国,王延庆,张成浩.铝电解槽石墨化阴极和槽壳的变形[J].北京科技大学学报,2012,34(6):695-700.
作者姓名:王维  薛济来  朱骏  冯鲁兴  李吉刚  牛庆仁  何华  韩立国  王延庆  张成浩
作者单位:1. 北京科技大学冶金与生态工程学院,北京100083 北京科技大学钢铁冶金新技术国家重点实验室,北京100083
2. 北京科技大学冶金与生态工程学院,北京,100083
3. 中电投宁夏青铜峡能源铝业集团有限公司,银川,750002
摘    要:通过实验室和工业电解槽系统研究了铝电解槽阴极和槽壳的变形,从中获取钠膨胀系数并用于工业阴极和槽壳的应力场的模拟分析,在考虑温度梯度热应力和钠膨胀化学应力共同作用条件下,获得了工业槽焙烧、启动后槽壳的变形位移数值.用机械式位移计对350 kA石墨化阴极工业电解槽变形进行了长达360 d的现场测试和监测,模拟值与实测值吻合.

关 键 词:铝冶金  电解还原  电解槽  变形  有限元分析

Deformation in the graphitized cathodes and on the shells of aluminum reduction cells
WANG Wei,XUE Ji-lai,ZHU Jun,FENG Lu-xing,LI Ji-gang,NIU Qing-ren,HE Hua,HAN Li-guo,WANG Yan-qing,ZHANG Cheng-hao.Deformation in the graphitized cathodes and on the shells of aluminum reduction cells[J].Journal of University of Science and Technology Beijing,2012,34(6):695-700.
Authors:WANG Wei  XUE Ji-lai  ZHU Jun  FENG Lu-xing  LI Ji-gang  NIU Qing-ren  HE Hua  HAN Li-guo  WANG Yan-qing  ZHANG Cheng-hao
Institution:1) School of Metallurgical and Ecological Engineering,University of Science and Technology Beijing,Beijing 100083,China 2) State Key Laboratory of Advanced Metallurgy,University of Science and Technology Beijing,Beijing 100083,China 3) Ningxia Qingtongxia Energy Aluminium Group,China Power Investment Corporation,Yinchang 750002,China
Abstract:Deformations in the cathode and on the shell of aluminum reduction cells were systematically investigated in laboratory and industrial cells.The sodium expansion coefficient was obtained from test data.Numerical simulation was utilized to study the stress fields of the cathode and the shell,which took not only the sodium expansion chemical stress but also the temperature gradient thermal stress into account.The displacements of the shell during cell heating treatment and after start-up were acquired.The deformation on the shell of a 350 kA cell with the graphitized cathode has been monitored and measured for 360d with a mechanical displacement meter.It is found that the simulation values are in good agreement with the measured ones.
Keywords:aluminum metallurgy  electrolytic reduction  electrolytic cells  deformation  finite element method
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