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Effects of the types of overlap on the mechanical properties of FSSW welded AZ series magnesium alloy joints 被引量:1

Effects of the types of overlap on the mechanical properties of FSSW welded AZ series magnesium alloy joints
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摘要 The effects of the types of overlap on the mechanical properties of the friction stir spot welding (FSSW) welded AZ series magnesium alloy joints were investigated by microstructural observations, microhardness tests, and tensile tests. The results show that the microstructure of the stir zone adjacent to the periphery of the rotating pin is mainly composed of the upper sheet. The average distance D between the longitudinal segment of the curved interface and the keyhole periphery, the tensile shear force, and the microhardness of the stir zone of the FSSW welded AZ61 alloy joint are the highest in all samples. During FSSW of AZ31 and AZ61 dissimilar magnesium alloys, the irregular deformation of the longitudinal segment of the curved interface appears, while the microhardness of the stir zone is higher when AZ61 alloy is the upper sheet. Moreover, the microhardness of the stir zone increases initially and then decreases sharply in the longitudinal test position. The effects of the types of overlap on the mechanical properties of the friction stir spot welding (FSSW) welded AZ series magnesium alloy joints were investigated by microstructural observations, microhardness tests, and tensile tests. The results show that the microstructure of the stir zone adjacent to the periphery of the rotating pin is mainly composed of the upper sheet. The average distance D between the longitudinal segment of the curved interface and the keyhole periphery, the tensile shear force, and the microhardness of the stir zone of the FSSW welded AZ61 alloy joint are the highest in all samples. During FSSW of AZ31 and AZ61 dissimilar magnesium alloys, the irregular deformation of the longitudinal segment of the curved interface appears, while the microhardness of the stir zone is higher when AZ61 alloy is the upper sheet. Moreover, the microhardness of the stir zone increases initially and then decreases sharply in the longitudinal test position.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第3期231-235,共5页 矿物冶金与材料学报(英文版)
基金 financially supported by the Key Scientific and Technological Project of Chongqing,China (No.2009AC4046) the Natural Science Foundation Project of Chongqing Science & Technology Commission,China (No.2010BB4039) the Fundamental Research Funds for the Central Universities of China (Nos.CDJZR11135501 and CDJXS10131155)
关键词 magnesium alloys friction stir welding microstructure MICROHARDNESS tensile properties magnesium alloys friction stir welding microstructure microhardness tensile properties
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