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Effects of cooling rate on solidification behavior of dilute Al-Sc and Al-Sc-Zr solid solution
作者姓名:金头男  聂祚仁  徐国富  阮海琼  杨军军  付静波  左铁镛
作者单位:SchoolofMaterialsScienceandEngineering,BeijingUniversityofTechnology,Beijing100022,China
基金项目:国家重点基础研究发展计划(973计划)
摘    要:Six alloys with different compositions of Al-0.1%Sc, Al-0.3%Sc, Al-0.3%Zr, Al-0.1%Sc-0.1%Zr,Al-0.3%Sc-0.1%Zr and Al-0.3%Sc-0.3%Zr were prepared by casting in a wedge shaped copper mould. The hardness test, microstructure observation, and DSC thermal analysis were applied to fully investigate the solidification behavior of the wedge tip (whose cooling rate is 1000 K/s) and the top surface (cooling rate 100 K/s) of each casting. The results show that the cast structures in the hypoeutectic region of AI-Sc alloys are slightly affected by cooling rates during the solidification. In the case of hypereutectic alloy of Al-0.3%Sc-0.3%Zr, the cast grains were remarkably refined under the condition of a 100 K/s cooling rate, however, under a 1000 K/s cooling rate condition,solute atoms contribute nothing to the grain-refinement, due to the eutectic concentration becomes higher. The hardness can be improved to a greater degree by Sc single addition, compared to single Zr addition, but it can be improved even greater when Sc added together with Zr. It is sensitive to cooling rate, the higher the cooling rate, thegreater the hardness. By combining the results of TEM examination and DSC analysis, it can be seen that a supersaturated Al solid solution forms during the solidification, and the solubility of Sc in Al solution can be improved by increasing the cooling rate.

关 键 词:Al-Sc  Al-Sc-Zr  铝合金  凝固  冷却速率  TEM

Effects of cooling rate on solidification behavior of dilute Al-Sc and Al-Sc-Zr solid solution
JIN Tou-nan,NIE Zuo ren,XU Guo fu,RUAN Hai qiong,YANG Jun jun,FU Jing bo,ZUO Tie yong.Effects of cooling rate on solidification behavior of dilute Al-Sc and Al-Sc-Zr solid solution[J].Transactions of Nonferrous Metals Society of China,2004,14(1):58-62.
Authors:JIN Tou-nan  NIE Zuo ren  XU Guo fu  RUAN Hai qiong  YANG Jun jun  FU Jing bo  ZUO Tie yong
Abstract:Six alloys with different compositions of Al-0.1%Sc, Al-0.3%Sc, Al-0.3%Zr, Al-0.1% Sc-0. 1%Zr,Al-0.3%Sc-0.1%Zr and Al-0.3%Sc-0.3%Zr were prepared by casting in a wedge shaped copper mould. The hardness test, microstructure observation, and DSC thermal analysis were applied to fully investigate the solidification behavior of the wedge tip (whose cooling rate is 1 000 K/s) and the top surface (cooling rate 100 K/s) of each casting. The results show that the cast structures in the hypoeutectic region of Al-Sc alloys are slightly affected by cooling rates during the solidification. In the case of hypereutectic alloy of Al-0.3%Sc-0.3%Zr , the cast grains were remarkably refined under the condition of a 100 K/s cooling rate, however, under a 1 000 K/s cooling rate condition,solute atoms contribute nothing to the grain-refinement, due to the eutectic concentration becomes higher. The hardness can be improved to a greater degree by Sc single addition, compared to single Zr addition, but it can be improved even greater when Sc added together with Zr. It is sensitive to cooling rate, the higher the cooling rate, the greater the hardness. By combining the results of TEM examination and DSC analysis, it can be seen that a supersaturated Al solid solution forms during the solidification, and the solubility of Sc in Al solution can be improved by increasing the cooling rate.
Keywords:Al-Sc  Al-Sc-Zr  solidification  cooling rate  solid solubility
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