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下扎深度对AZ91镁合金回填式搅拌摩擦点焊接头组织和断裂行为的影响
引用本文:Hai-feng Zhang,Li Zhou,Wen-lin Li,Gao-hui Li,Yi-tang Tang,Ning Guo,Ji-cai Feng. 下扎深度对AZ91镁合金回填式搅拌摩擦点焊接头组织和断裂行为的影响[J]. 矿物冶金与材料学报, 2021, 28(4): 699-709. DOI: 10.1007/s12613-020-2044-x
作者姓名:Hai-feng Zhang  Li Zhou  Wen-lin Li  Gao-hui Li  Yi-tang Tang  Ning Guo  Ji-cai Feng
作者单位:1)Shandong Provincial Key Laboratory of Special Welding Technology, Harbin Institute of Technology at Weihai, Weihai 264209, China
基金项目:and the Key Research&Development Program of Shandong Province,China;This research was financially supported by the National Science and Technology Major Project of China
摘    要:We used refill friction stir spot welding (RFSSW) to join 2-mm-thick AZ91D-H24 magnesium alloy sheets, and we investigated in detail the effect of tool plunge depth on the microstructure and fracture behavior of the joints. A sound joint surface can be obtained using plunge depths of 2.0 and 2.5 mm. Plunge depth was found to significantly affect the height of the hook, with greater plunge depths corresponding to more severe upward bending of the hook, which compromised the tensile-shear properties of the joints. The hardness reached a minimum at the thermo-mechanically affected zone due to the precipitation phases of this zone as it dissolved into the α-matrix during the welding process. The fracture modes of RFSSW joints can be divided into three types: shear fracture, plug fracture, and shear–plug fracture. Of these, the joint with a shear–plug fracture exhibited the best tensile-shear load of 6400 N.

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Effect of tool plunge depth on the microstructure and fracture behavior of refill friction stir spot welded AZ91 magnesium alloy joints
Hai-feng Zhang,Li Zhou,Wen-lin Li,Gao-hui Li,Yi-tang Tang,Ning Guo,Ji-cai Feng. Effect of tool plunge depth on the microstructure and fracture behavior of refill friction stir spot welded AZ91 magnesium alloy joints[J]. International Journal of Minerals,Metallurgy and Materials, 2021, 28(4): 699-709. DOI: 10.1007/s12613-020-2044-x
Authors:Hai-feng Zhang  Li Zhou  Wen-lin Li  Gao-hui Li  Yi-tang Tang  Ning Guo  Ji-cai Feng
Abstract:We used refill friction stir spot welding (RFSSW) to join 2-mm-thick AZ91D-H24 magnesium alloy sheets, and we investigated in detail the effect of tool plunge depth on the microstructure and fracture behavior of the joints. A sound joint surface can be obtained using plunge depths of 2.0 and 2.5 mm. Plunge depth was found to significantly affect the height of the hook, with greater plunge depths correspond-ing to more severe upward bending of the hook, which compromised the tensile-shear properties of the joints. The hardness reached a minim-um at the thermo-mechanically affected zone due to the precipitation phases of this zone as it dissolved into the α-matrix during the welding process. The fracture modes of RFSSW joints can be divided into three types: shear fracture, plug fracture, and shear–plug fracture. Of these, the joint with a shear–plug fracture exhibited the best tensile-shear load of 6400 N.
Keywords:refill friction stir spot welding  AZ91 magnesium alloy  microstructure  fracture behavior
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