Study on laser-MIG hybrid welding characteristics of A7N01-T6 aluminum alloy

被引:0
作者
Sang Liu
Jianmin Li
Gaoyang Mi
Chunming Wang
Xiyuan Hu
机构
[1] Huazhong University of Science and Technology,School of Materials Science and Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2016年 / 87卷
关键词
A7N01-T6 aluminum alloy; Laser-MIG hybrid welding; Three-dimensional porosities; Mechanical properties;
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中图分类号
学科分类号
摘要
In this paper, an experimental study of laser-metal inert gas (MIG) hybrid welding of A7N01-T6 aluminum alloy in butt joint configuration was carried out. Visual examination and optical microscope were utilized to study the macro profile and microstructure, while mechanical properties of the welds were evaluated with the help of a tensile test and microhardness measurement. The joints were evaluated by the scanning electron microscope (SEM) and energy dispersive X-ray spectroscopy (EDS). Besides, X-ray microtomography was employed to characterize the morphology, quantity, and distribution of porosities in the weld seam. The results revealed that 4-mm thickness high-quality laser-arc hybrid welding butt joints were obtained with parameters of laser power 3.5 kW, welding speed 4 m/min, and welding current 140 A. The average tensile strength of welded joints reached 268 MPa, 76.6 % of that of the base metal. The loss was likely to be related to the presence of micropores, and further three-dimensional characterization indicated that there were altogether 4326 pores with diameters ranging from 0.1 to 79 μm in the tested sample, accounting for 0.57 % of the volume fraction and 4.56 % of the cross-sectional area fraction at the most. The existence of porosities, the dissolution, and coarsening of strengthening precipitates together promoted the joint softening in A7N01-T6 hybrid welding process.
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页码:1135 / 1144
页数:9
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共 79 条
[1]  
Dixit M(2008)Structure-property correlations in Al 7050 and Al 7055 high-strength aluminum alloys Mater Sci Eng A 478 163-172
[2]  
Mishra R(2009)Effect of welding processes on tensile properties of AA6061 aluminium alloy joints Int J Adv Manuf Technol 40 286-296
[3]  
Sankaran K(2011)Friction stir welded structural materials: beyond Al-alloys Int Mater Rev 56 1-48
[4]  
Lakshminarayanan A(2008)Effect of post weld aging treatment on tensile properties of electron beam welded AA2219 aluminum alloy Int J Adv Manuf Technol 37 294-301
[5]  
Balasubramanian V(2011)Hybrid fiber laser-arc welding of thick section high strength low alloy steel Mater Des 32 3399-3413
[6]  
Elangovan K(2013)Interaction effects between laser beam and plasma arc in hybrid welding of aluminum Phys Procedia 41 81-89
[7]  
Cam G(2015)Single-sided laser beam welding of a dissimilar AA2024-AA7050 T-joint Mater Des 76 110-116
[8]  
Malarvizhi S(2011)Microstructural and mechanical characterization of laser beam welded AA6056 Al-alloy Mater Sci Eng A 528 7350-7356
[9]  
Raghukandan K(2002)Porosity formation mechanism and reduction method in CO Weld Int 16 451-460
[10]  
Viswanathan N(2000) laser welding of stainless steel J Laser Appl 12 245-250