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Formation Mechanism of Microstructure of Melt Spun Al—In Immiscible Alloys
作者姓名:YuanLIU  YanxiangLI  JingjieGUO  JunJIA
作者单位:[1]DepartmentofMechanicalEngineering,TsinghuaUniversity,Beijing100084,China [2]SchoolofMaterialsScienceandEngineering,HarbinInstituteofTechnology,Harbin150001,China
摘    要:Immiscible alloys are attractive for their valuable physical and mechanical properties. In this paper, Al-ln immiscible alloy is prepared by melt spinning process and its morphological evolution is studied at various indium contents. The results show that the morphologies of the matrix phase depend on the indium content. Different morphologies lead to different distribution of the second phase particles. Due to a particular solidification mechanism of immiscible alloys, even under the melt spinning rapid solidification condition, it is still impossible to produce homogeneous Al-In hypomonotectic alloy ribbons. But for Al-In hypermonotectic alloys, there is almost no segregation of the second phase throughout the cross section of the ribbons.

关 键 词:铝铟合金  微观结构  Al-In合金  形成机制  不相溶合金  快速凝固

Formation Mechanism of Microstructure of Melt Spun Al-In Immiscible Alloys
YuanLIU YanxiangLI JingjieGUO JunJIA.Formation Mechanism of Microstructure of Melt Spun Al-In Immiscible Alloys[J].Journal of Materials Science & Technology,2003,19(4):376-378.
Authors:Yuan LIU  Yanxiang LI  Jingjie GUO  Jun JIA
Affiliation:Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China...
Abstract:Immiscible alloys are attractive for their valuable physical and mechanical properties. In this paper, Al-ln immiscible alloy is prepared by melt spinning process and its morphological evolution is studied at various indium contents. The results show that the morphologies of the matrix phase depend on the indium content. Different morphologies lead to different distribution of the second phase particles. Due to a particular solidification mechanism of immiscible alloys, even under the melt spinning rapid solidification condition, it is still impossible to produce homogeneous Al-ln hypomonotectic alloy ribbons. But for Al-ln hypermonotectic alloys, there is almost no segregation of the second phase throughout the cross section of the ribbons.
Keywords:Immiscible alloys  Rapid solidification  Microstructure
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