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Effect of liquid-liquid structure transition on solidification of Sn-Bi alloys
作者姓名:祖方遒  周兵  李先芬  益汛  陈铁平  孙其强
作者单位:College of Materials Science and Engineering, Hefei University of Technology, Hefei 230009, China
摘    要:The effect of the liquid-liquid structure transition(L-LST) on the solidification behaviors and morphologies of Sn-Bi alloys was studied further. The results show that the undercooling of the primary and eutectic phase increases and the microstructure becomes finer after solidifying from the melt experiencing the L-LST. In the meantime, in hypoeutectic alloy, when solidifying from the melt experiencing the L-LST, the morphology of primary phase changes from the fir-tree crystal into the equiaxed crystal, and less primary phase and more eutectic structure are observed. Moreover, in eutectic alloy, the spacing of eutectic phase decreases markedly. These investigations would be beneficial to further exploration of the correlation between the melt structure and the micro mechanism of solidification.

关 键 词:液体结构  过冷现象  凝固结构  Sn-Bi合金
收稿时间:10 January 2007
修稿时间:2007-01-10

Effect of liquid-liquid structure transition on solidification of Sn-Bi alloys
ZU Fang-qiu,ZHOU Bing,LI Xian-fen,YI Xun,CHEN Yi-ping,SUN Qi-qiang.Effect of liquid-liquid structure transition on solidification of Sn-Bi alloys[J].Transactions of Nonferrous Metals Society of China,2007,17(5):893-897.
Authors:ZU Fang-qiu  ZHOU Bing  LI Xian-fen  YI Xun  CHEN Yi-ping  SUN Qi-qiang
Affiliation:College of Materials Science and Engineering, Hefei University of Technology, Hefei 230009, China
Abstract:The effect of the liquid-liquid structure transition(L-LST) on the solidification behaviors and morphologies of Sn-Bi alloys was studied further. The results show that the undercooling of the primary and eutectic phase increases and the microstructure becomes finer after solidifying from the melt experiencing the L-LST. In the meantime, in hypoeutectic alloy, when solidifying from the melt experiencing the L-LST, the morphology of primary phase changes from the fir-tree crystal into the equiaxed crystal, and less primary phase and more eutectic structure are observed. Moreover, in eutectic alloy, the spacing of eutectic phase decreases markedly. These investigations would be beneficial to further exploration of the correlation between the melt structure and the micro mechanism of solidification.
Keywords:liquid-liquid structure transition  undercooling  solidification structure  Sn-Bi alloys
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