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Effect of High-energy Ball Milling on Synthetic Reaction in Al-TiO2-C System
作者姓名:KOU  Shengzhong  XU  Guangji  DING  Yutian
作者单位:State Key Lab of Advanced Nonferrous Materials, Lanzhou University of Technology,Lanzhou 730050,China
摘    要:High-energy ball milling has a great influence on the temperature characters of synthetic reaction in Al-TiO2-C system by changing the size,distribution state and wet ability of reactants.Reaction temperature characters(reaction ignition time,ignition temperature time.the maximum temperature and temperature rising rate)were changed by different milling time.The longer the milling time.the earlier the reaction.the quicker the temperature rise and the higher the maximum temperature.When the milling time exceeded 10 hours,the reactivity of reactants was so high that the synthetic reaction could take place at 850℃ directly without a long time pretreatment at 670℃.The microstructure of synthetic composites became uniform and the reinforced particles(TiC and α-Al2O3)became fine with milling time increasing.

关 键 词:高能球磨研磨  Al-TiO2-C系统  合成反应    二氧化钛    温度特征  微观结构
收稿时间:2005-05-28
修稿时间:2005-08-26

Effect of high-energy ball milling on synthetic reaction in Al−TiO2−C system
KOU Shengzhong XU Guangji DING Yutian.Effect of High-energy Ball Milling on Synthetic Reaction in Al-TiO2-C System[J].Journal of Wuhan University of Technology. Materials Science Edition,2005,20(4):50-54.
Authors:Kou Shengzhong  Xu Guangji  Ding Yutian
Affiliation:(1) State Key lab of Advanced Nonferrous Materials, Lanzhou University of Technology, 730050 Lanzhou, China
Abstract:High-energy ball milling has a great influence on the temperature characters of synthetic reaction in Al−TiO2−C system by changing the size, distribution state and wet ability of reactants. Reaction temperature characters (reaction ignition time, ignition temperature time, the maximum temperature and temperature rising rate) were changed by different milling time. The longer the milling time, the earlier the reaction, the quicker the temperature rise and the higher the maximum temperature. When the milling time exceeded10 hours, the reactivity of reactants was so high that the synthetic reaction could take place at 850°C directly without a long time pretreatment at 670°C. The microstructure of synthetic composites became uniform and the reinforced particles (TiC and α-Al2O3) became fine with milling time increasing.
Keywords:composites  synthetic reaction  Al2O3p-TiCp/Al  temperature character  microstructure
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