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铝电解槽内熔体与槽帮间换热系数计算 被引量:3
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作者 李德祥 郭天立 《有色金属》 CSCD 1993年第1期52-55,共4页
根据贵州铝厂160kA槽的现阶段槽膛内形及计算出的该槽膛内形下槽内衬温度分布规律,反推出槽内17处熔体与槽帮间的换热系数值。这些值的精确度,对贵铝的槽形而言,是很高的。
关键词 换热系数 铝电解槽 熔体 槽帮
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电解槽内衬材料与结构的合理配置 被引量:7
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作者 戚喜全 《有色金属》 CSCD 北大核心 2009年第3期105-108,共4页
电解槽内衬,不同位置所起的作用不同,生产过程中所受到的影响也不同。因此,应该依据不同位置内衬的作用采用不同的材质,不同的配置方式,以实现最大限度发挥每种材料的正面作用,降低其负面影响,最大限度提高电解槽寿命,降低生产过程中的... 电解槽内衬,不同位置所起的作用不同,生产过程中所受到的影响也不同。因此,应该依据不同位置内衬的作用采用不同的材质,不同的配置方式,以实现最大限度发挥每种材料的正面作用,降低其负面影响,最大限度提高电解槽寿命,降低生产过程中的额外能量消耗。作者依据内衬材料结构对电解槽寿命、能耗的影响的理解和自身经验,提出了合理的内衬配置方式。 展开更多
关键词 冶金技术 铝电解槽内衬 阴极膨胀 槽寿命 接触电阻率
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Colloidal Alumina-bonded TiB_2 Coating on Cathode Carbon Blocks in Aluminum Cells
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作者 Huimin Lu, Lanlan Yu, Chao Wang, Peng Sun (Department of Nonferrous Metallurgy, University of Science and Teclmology Beijing, Beijing 100083, China) 《Rare Metals》 SCIE EI CAS CSCD 2001年第2期101-106,共6页
Self-propagating high-temperature synthesis (SHS) with reduction process was used to fabricate TiB2 powder from TiO2-B2O3-Mg system. The colloidal alumina-bonded TiB2 paste was prepared and coated on the cathode carbo... Self-propagating high-temperature synthesis (SHS) with reduction process was used to fabricate TiB2 powder from TiO2-B2O3-Mg system. The colloidal alumina-bonded TiB2 paste was prepared and coated on the cathode carbon blocks. Various properties of the baked paste such as the corrosive resistance, thermal expansion and wettability were tested. Experimental results showed that the colloidal alumina-bonded TiB2 coating could be well wetted by liquid aluminum; and the thermal expansion coefficient of the coated material was 5.8x10(-6) degreesC(-1) at 20-1000 degreesC, which was close to that of the traditional anthracite block cathode (4x10(-6) degreesC(-1)); the electrical resistivity was 8 mu Omega (.)m at 900 degreesC when the content of alumina in the coated material was about 9% in mass fraction. In addition, some other good results such as sodium resistance were also reported. 展开更多
关键词 self-propagating high-temperature synthesis reduction process colloidal alumina-bonded TiB2 coating carbon CATHODE aluminum reduction cell
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