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金属学报  1990, Vol. 26 Issue (5): 86-91    
  论文 本期目录 | 过刊浏览 |
铝电解-阳极效应过程的蝴蝶突变模型
潘岳
青岛冶金矿山大学化学教研室
A MODEL OF BUTTERFLY CATASTROPHE FOR ANODE EFFECT IN ALUMINA ELECTROLYSING PROCESSING
PAN Yue Qingdao University of Metallurgy and Mining
引用本文:

潘岳. 铝电解-阳极效应过程的蝴蝶突变模型[J]. 金属学报, 1990, 26(5): 86-91.
. A MODEL OF BUTTERFLY CATASTROPHE FOR ANODE EFFECT IN ALUMINA ELECTROLYSING PROCESSING[J]. Acta Metall Sin, 1990, 26(5): 86-91.

全文: PDF(508 KB)  
摘要: 对实验数据作比较、拟合后,证明从正常铝电解到发生阳极效应的过程模式属于蝴蝶突变模型。这个模型可以统一地描述诸系统参量变化时的冰晶石—氧化铝熔盐体系的复杂行为,从而比较深刻认识阳极效应及其发生规律。
关键词 铝电解阳极效应蝴蝶突变模型    
Abstract:A model of butterfly catastrophe was studied on the basis of matchingand fitting the previous experimenial data to confirm the alumina electrolysing pro-cessing when anode effect occurs. The complicated behaviours in the cryolite alumi-ha melts systems with varing (controllable) parameter would be generally described.Therefore, the anode effect and its occurrence may be thoroughly understood.
Key wordsalumina electrolysing    anode effect    butterfly catastrophe model
收稿日期: 1990-05-18     
1 Poston T, Stewart I. Catastrophe Theory and its Application, London: Pitman, 1978: 178
2 张明杰,邱竹贤.东北工学院学报,1984;(1) :49
3 邱竹贤 张明杰等.铝电解中界面现象及界面反应.东北工学院出版社,1986:137
4 张明杰.东北工学院博士学位论文,1985:67
5 Calandra A J, Casteuano C E. Electrochim Acta, 1979; 24: 431
6 Mazza B, Pedefrri P. Electrochim Mat, 1967; 2: 385
7 Thonstad J, Nordmo F, Rodseth J K. Elctrochim Acta, 1974; 19: 761
8 Haken H,徐锡申,陈武刚等译.协同学.北京:原子能出版社,1984:226
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