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Improving tensile-shear properties of friction stir lap welded dissimilar Al/Mg joints by eliminating hook defect and controlling interfacial reaction
作者姓名:Yuqing MAO  Ping YANG  Wenyan ZHANG  Ning LI  Hao NIE  Danyang LIN  Liming KE
作者单位:National Defence Key Discipline Laboratory of Light Alloy Processing Science and Technology, Nanchang Hangkong University
基金项目:financially supported by the National Natural Science Foundation of China (NSFC) (Nos. 52005240 and 52164045);;Young Talent Program of Major Disciplines of Academic and Technical Leaders in Jiangxi Province (No. 20212BCJ23028);
摘    要:To improve tensile-shear properties of fiction stir lap welded(FSLW) dissimilar Al/Mg joints, pin-tip profiles were innovatively designed and welding speed was optimized, and effects of them on formation, interface microstructure and mechanical properties of different FSLW joints were investigated. With increasing the welding speed, the tensile-shear load of FSLW joints produced by three pins presents an increasing firstly and then decreasing trend. Compared with Rpin, the hook and hole defect i...

收稿时间:20 September 2022

Improving tensile-shear properties of friction stir lap welded dissimilar Al/Mg joints by eliminating hook defect and controlling interfacial reaction
Yuqing MAO,Ping YANG,Wenyan ZHANG,Ning LI,Hao NIE,Danyang LIN,Liming KE.Improving tensile-shear properties of friction stir lap welded dissimilar Al/Mg joints by eliminating hook defect and controlling interfacial reaction[J].Chinese Journal of Aeronautics,2023,36(7):257-267.
Institution:National Defence Key Discipline Laboratory of Light Alloy Processing Science and Technology, Nanchang Hangkong University, Nanchang 330063, China
Abstract:To improve tensile-shear properties of fiction stir lap welded (FSLW) dissimilar Al/Mg joints, pin-tip profiles were innovatively designed and welding speed was optimized, and effects of them on formation, interface microstructure and mechanical properties of different FSLW joints were investigated. With increasing the welding speed, the tensile-shear load of FSLW joints produced by three pins presents an increasing firstly and then decreasing trend. Compared with R-pin, the hook and hole defect in the joints made by S-pin and T-pin are eliminated owing to additional eccentric force. Moreover, the joints obtained by T-pin at 75 mm/min have the highest tensile-shear load, and a maximum value of 3.425 kN is produced, which increases by 96.8%. Meanwhile, the pin-tip profile improves significantly the interface reaction depending on the welding temperature. For R-pin, thick brittle intermetallic compounds of about 6.9 μm Al3Mg2 and 13.3 μm Al12Mg17 layers at the welding interface derived from diffusion reaction are formed, resulting in continuous cracks. However, using T-pin can raise the interface temperature, and which makes the interface liquefy locally to generate only 2.2 μm Al3Mg2 layer and dispersive (Al12Mg17 + Mg) eutectic structure. This can release high residual stress and remove welding crack, consequently enhancing the interface properties of T-pin joints.
Keywords:Dissimilar Al/Mg alloys  Friction stir lap welding  Hook defect  Interface microstructure  Tensile-shear properties
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