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Joint performance of CO2 laser beam welding 5083,H321 aluminum alloy
引用本文:祁俊峰 张冬云 肖荣诗 陈铠 左铁钏. Joint performance of CO2 laser beam welding 5083,H321 aluminum alloy[J]. 中国焊接, 2007, 16(2): 40-45
作者姓名:祁俊峰 张冬云 肖荣诗 陈铠 左铁钏
作者单位:College of Laser Engineering, Beijing University of Technology, Beijing, 100022
基金项目:北京工业大学科研基金重点项目
摘    要:Laser beam welding of aluminum alloys is expected to offer good mechanical properties of welded joints. In this experimental work reported, CO2 laser beam autogenoas welding and wire feed welding are conducted on 4 mm thick 5083- H321 aluminum alloy sheets at different welding variables. The mechanical properties and microstructure characteristics of the welds are evaluated through tensile tests, micro-hardness tests, optical microscopy and scanning electron microscopy (SEM). Experimental results indicate that both the tensile strength and hardness of laser beam welds are affected by the constitution of filler material, except the yield strength. The soften region of laser beam welds is not in the heat-affected zone ( HAZ ). The tensile fracture of laser beam welded specimens takes place in the weld zone and close to the weld boundary because of different filler materials. Some pores are found on the fracture face, including hydrogen porosities and blow holes, but these pores have no influence on the tensile strength of laser beam welds. Tensile strength values of laser beam welds with filler wire are up to 345.57 MPa, 93% of base material values, and yield strengths of laser beam welds are equivalent to those of base metal (264. 50 MPa).

关 键 词:铝合金  激光束  焊接技术  二氧化碳

Joint performance of CO2 laser beam welding 5083-H321 aluminum alloy
Qi Junfeng,Zhang Dongyun,Xiao Rongshi,Chen Kai,Zuo Tiechuan. Joint performance of CO2 laser beam welding 5083-H321 aluminum alloy[J]. China Welding, 2007, 16(2): 40-45
Authors:Qi Junfeng  Zhang Dongyun  Xiao Rongshi  Chen Kai  Zuo Tiechuan
Affiliation:College of Laser Engineering,Beijing University of Technology,Beijing,100022
Abstract:Laser beam welding of aluminum alloys is expected to offer good mechanical properties of welded joints. In this experimental work reported, CO2 laser beam autogenous welding and wire feed welding are conducted on 4 mm thick 5083-H321 aluminum alloy sheets at different welding variables. The mechanical properties and microstructure characteristics of the welds are evaluated through tensile tests, micro-hardness tests, optical microscopy and scanning electron microscopy (SEM). Experimental results indicate that both the tensile strength and hardness of laser beam welds are affected by the constitution of filler material, except the yield strength. The soften region of laser beam welds is not in the heat-affected zone (HAZ). The tensile fracture of laser beam welded specimens takes place in the weld zone and close to the weld boundary because of different filler materials. Some pores are found on the fracture face, including hydrogen porosities and blow holes, but these pores have no influence on the tensile strength of laser beam welds. Tensile strength values of laser beam welds with filler wire are up to 345.57 MPa, 93% of base material values, and yield strengths of laser beam welds are equivalent to those of base metal (264.50 MPa).
Keywords:laser beam  welding  5083 aluminum alloy
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