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Simulation of thermal and sodium expansion stress in aluminum reduction cells

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【作者】 李劼伍玉云赖延清刘伟王志刚刘杰刘业翔

【Author】 LI Jie,WU Yu-yun,LAI Yan-qing,LIU Wei,WANG Zhi-gang,LIU Jie,LIU Ye-xiang(School of Metallurgical Science and Engineering,Central South University,Changsha 410083,China)

【机构】 School of Metallurgical Science and Engineering Central South UniversitySchool of Metallurgical Science and EngineeringCentral South UniversityChangsha 410083China

【摘要】 Two finite element(FE) models were built up for analysis of stress field in the lining of aluminum electrolysis cells.Distribution of sodium concentration in cathode carbon blocks was calculated by one FE model of a cathode block.Thermal stress field was calculated by the other slice model of the cell at the end of the heating-up.Then stresses coupling thermal and sodium expansion were considered after 30 d start-up.The results indicate that sodium penetrates to the bottom of the cathode block after 30 d start-up.The semi-graphitic carbon block has the largest stress at the thermal stage.After 30 d start-up the anthracitic carbon has the greatest sodium expansion stress and the graphitized carbon has the lowest sodium expansion stress.Sodium penetration can cause larger deformation and stress in the cathode carbon block than thermal expansion.

【Abstract】 Two finite element(FE) models were built up for analysis of stress field in the lining of aluminum electrolysis cells.Distribution of sodium concentration in cathode carbon blocks was calculated by one FE model of a cathode block.Thermal stress field was calculated by the other slice model of the cell at the end of the heating-up.Then stresses coupling thermal and sodium expansion were considered after 30 d start-up.The results indicate that sodium penetrates to the bottom of the cathode block after 30 d start-up.The semi-graphitic carbon block has the largest stress at the thermal stage.After 30 d start-up the anthracitic carbon has the greatest sodium expansion stress and the graphitized carbon has the lowest sodium expansion stress.Sodium penetration can cause larger deformation and stress in the cathode carbon block than thermal expansion.

【基金】 Project(50374081) supported by the National Natural Science Foundation of China
  • 【文献出处】 Journal of Central South University of Technology ,中南工业大学学报(英文版) , 编辑部邮箱 ,2008年02期
  • 【分类号】TF821
  • 【被引频次】7
  • 【下载频次】57
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