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熔盐电解法制备海绵钛工艺中TiO_2电极制备关键技术分析 被引量:4

Preparation Key Technical Analysis of TiO_2 Electrode in the Production of Titanium by Electrolysis in Molten Salt
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摘要 熔盐电解法制备海绵钛所用电极,既是电的传导体,又是产品的来源。在电极的制备过程中,既要保证电流的顺畅导通,又要满足熔盐渗入电极中的工艺要求,如何解决这两者之间的矛盾,是关系着该工艺能否有效实施的关键。本文对上述问题进行了探索,通过理论分析及进行各种温度下电极的电阻系数、孔隙率的实验测定,找出制备电极的较好工艺。并应用该优化工艺后的电极进行了电解实验,产品含钛量达到99.5%以上,结合试验结果对电源设备进行了改进,电解电流已达到了40安培以上,在工艺上实现了较大的突破。 TiO2 electrode is both a conductor and sources in the production of sponge titanium by molten salt electrolysis. In preparation of the electrode, to ensure electric current and meet the technology requirement of molten salt infiltration is a key pinot of contradiction, which will impact the technique process. In connection with above mentioned problems, theoretical analysis, detection of resistivity and porosity in different temperature were conducted and an optimized technical process was pre- posed. A number of electrolysis experiments showed that the sponge titanium made from the electrode which was prepared by the optimized process contains more than 99.5% titanium. The current supply was also modifed according to the electrolysis experiments and the electric current could reach as high as 40A, which makes a large breakthrough in process.
出处 《材料开发与应用》 CAS 2010年第1期1-5,共5页 Development and Application of Materials
关键词 二氧化钛 孔隙率 导电性 电解 Electrolysis Molten Salt TiO2 Conductivity Porosity Titanium
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参考文献8

  • 1莫畏,邓国珠,罗方承.钛冶金[M].北京:冶金工业出版社,2007:164.
  • 2Leyens C, Peters M. Titanium and Titanium Alloys [ M ]. Weinheim : Wiley-VCH Verlag GmbH & Co. KgaA, Weinheim,2003.1.
  • 3汤胜博,李珍,彭晖,邢鹏飞,罗志涛.FFC法制备海绵钛的TiO_2电极行为研究[J].材料开发与应用,2009,24(4):18-20. 被引量:3
  • 4Nagesh Ch R V S, Sitaraman T S, Ramachandran C S, et al. Development of indigenous technology for production of titanium sponge by the Kroll process [J]. Bulletin of Materials Science, 1994, 17 (6) : 1167 -1179.
  • 5Chen G Z , Fray D G, Farthing T W. Direct electrochemical reduction of titanium dioxide to titanium in molten Calcium Chloride [ J ]. Nature , 2000 , 407 (9) :361.
  • 6刘美凤,郭占成.金属钛制备方法的新进展[J].中国有色金属学报,2003,13(5):1238-1245. 被引量:42
  • 7Brook R J.陶瓷工艺(第Ⅱ部分)[M].北京:科学出版社,1999.75.
  • 8刘培生.多孔材料孔率的测定方法[J].钛工业进展,2005,22(6):34-37. 被引量:41

二级参考文献68

  • 1邹敏,刘国钦,王琪琳,马光强.真空电解法制备海绵钛中阴极的制备与表征[J].材料热处理学报,2007,28(3):19-21. 被引量:4
  • 2刘美凤,郭占成,卢维昌.TiO_2直接电解还原过程的研究[J].中国有色金属学报,2004,14(10):1752-1758. 被引量:47
  • 3Chen G Z , Fray D G , Farthing T W. Direct electrochemical reduction of titanium dioxide to titanium in molten Calcium Chloride [ J ]. Nature , 2000 , 407 (9) :361.
  • 4Fray D J, Chen G Z. Reduction of titanium and other metal oxides using electro - deoxidation [ J ]. Materials Science and Technology, 2002,20 (3) :295.
  • 5Suzuki Ryosuke O, Teranuma Koh, Ono Katsutoshi. Calciothermic reduction of titanium oxide and in - situ electrolysis in molten CaCl2 [ J ]. Metallurgical and Materials Transactions, 2003, 34B :287.
  • 6Chen G Z, Fray D J, Farthing T W. Cathodic deoxygenation of the alpha case on titanium and alloys inmolten calcium chloride[ J]. Metallurgical and Materials Transactions B, 2001,32B : 1041 - 1052.
  • 7Gerdemann S J. Titanium process technologies [ J ]. Advances Materials and Processes , 2001,159 (7) :41 -43.
  • 8Ginatta M V, Orsello G, P, erruti R. Method and cell for the electrolytic production of a polyvalent metal[P]. US5015342, 1991 - 03- 14.
  • 9Ginatta M V. Why produce titanium by EW[J].JOM, 2000, 52(5): 18-20.
  • 10Boyer R, Welseh G, Collings E W. Materials Properties Handbook: Titanium Alloys[M]. Materials Park,OH.. ASM Internationals, 1994. 125- 163.

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