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Microstructure and mechanical property of 2024/3003 gradient aluminum alloy
引用本文:张卫文,陈维平,费劲,倪东惠,李元元.Microstructure and mechanical property of 2024/3003 gradient aluminum alloy[J].中南工业大学学报(英文版),2004,11(2):128-133.
作者姓名:张卫文  陈维平  费劲  倪东惠  李元元
作者单位:CollegeofMechanicalEngineering,SouthChinaUniversityofTechnologyGuangzhou510640,China
摘    要:2024/3003 gradient aluminum alloy was prepared by semi-continuous casting using double-stream-pou-ring technique. The microstructures of the as-cast, pressed and heat-treated alloys were analyzed by scanning elec-tron microscope and transmission electron microscope. And the mechanical properties of the alloy in pressed and heat-treated states were studied. The results show that the ingots with diameter of 65 mm and external thickness about 5.5 mm are obtained when the temperatures of the melt in the internal and external ladles are 1 023 and 1 003 K, respectively, and the nozzle diameter is 2.0 mm. The microstructures of the as-cast alloy consist of α(AI) θ(CuAl2)q S(Al2CuMg) in the internal region and α(Al) MnAl6 in the external region. The phases found in the internal and external layers coexist in the transition zone. The transition layer is maintained after plastic deformation and heat treatment of the alloy. The tensile strength, yield strength and elongation of the alloy are 300 MPa,132 MPa and 16.0%, respectively, after T6 treatment. The tensile and yield strength are increased by 150.0% and 94.1%, respectively, compared with that of 3003 aluminum alloy. The maximum hardness in the internal region of 2024/3003 gradient aluminum alloy can be increased from HRF 55 in the pressed state to HRF 70 in the heat-treated state.

关 键 词:材料科学    合金  微观结构  机械性能
收稿时间:3 April 2003
修稿时间:28 June 2003

Microstructure and mechanical property of 2024/3003 gradient aluminum alloy
Zhang Wei-wen , Chen Wei-ping , Fei Jin , Ni Dong-hui and Li Yuan-yuan.Microstructure and mechanical property of 2024/3003 gradient aluminum alloy[J].Journal of Central South University of Technology,2004,11(2):128-133.
Authors:Zhang Wei-wen  Chen Wei-ping  Fei Jin  Ni Dong-hui and Li Yuan-yuan
Affiliation:(1) College of Mechanical Engineering, South China University of Technology, 510640 Guangzhou, China
Abstract:2024/3003 gradient aluminum alloy was prepared by semi-continuous casting using double-stream-pouring technique. The microstructures of the as-cast, pressed and heat-treated alloys were analyzed by scanning electron microscope and transmission electron microscope. And the mechanical properties of the alloy in pressed and heat-treated states were studied. The results show that the ingots with diameter of 65 mm and external thickness about 5.5 mm are obtained when the temperatures of the melt in the internal and external ladles are 1023 and 1003 K, respectively, and the nozzle diameter is 2.0 mm. The microstructures of the as-cast alloy consist of α(Al) θ(CuAl2) S(Al2CuMg) in the internal region and α(Al) MnAl6 in the external region. The phases found in the internal and external layers coexist in the transition zone. The transition layer is maintained after plastic deformation and heat treatment of the alloy. The tensile strength, yield strength and elongation of the alloy are 300 MPa, 132 MPa and 16.0%, respectively, after T6 treatment. The tensile and yield strength are increased by 150.0% and 94.1%, respectively, compared with that of 3003 aluminum alloy. The maximum hardness in the internal region of 2024/3003 gradient aluminum alloy can be increased from HRF 55 in the pressed state to HRF 70 in the heat-treated state.
Keywords:2024/3003 alloy  gradient material  microstructure  mechanical property
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