TY - JOUR
T1 - Microstructure and mechanical properties of probeless friction stir spot welded Al[sbnd]Li alloy joints via fast electric pulse treatment
T2 - A comparative study
AU - Fan, Wenlong
AU - Chu, Qiang
AU - Yang, Xiawei
AU - Li, Wenya
AU - Zou, Yangfan
AU - Hao, Sijie
N1 - Publisher Copyright:
© 2023 Elsevier Inc.
PY - 2023/11
Y1 - 2023/11
N2 - To improve the performance of probeless friction stir spot welded (P-FSSW) joints, a fast electric pulse treatment (EPT) method was proposed firstly, and the microstructure evolution and mechanical properties of the joints after EPT was investigated in this study. Results show that the tensile and shear strength decreases slightly by about 10%, but the joint plasticity increases by about 23.7% after three electric pulse treatments. As the number of electric pulse treatments increases, the joint lap interface undergoes dynamic recrystallization and atomic diffusion, so microcracks are closed and interface bonding is improved. However, due to the different recrystallization degree in different characteristic zones of welded joints after electric pulse treatment, the plastic deformation gradient in the transition zone of welded joints increases. The incongruity of plastic deformation compatibility in the transition region would cause stress concentration. Therefore, the interface on both sides of the joint is favorable for crack propagation, which makes the shear fracture mode change into the plug fracture mode.
AB - To improve the performance of probeless friction stir spot welded (P-FSSW) joints, a fast electric pulse treatment (EPT) method was proposed firstly, and the microstructure evolution and mechanical properties of the joints after EPT was investigated in this study. Results show that the tensile and shear strength decreases slightly by about 10%, but the joint plasticity increases by about 23.7% after three electric pulse treatments. As the number of electric pulse treatments increases, the joint lap interface undergoes dynamic recrystallization and atomic diffusion, so microcracks are closed and interface bonding is improved. However, due to the different recrystallization degree in different characteristic zones of welded joints after electric pulse treatment, the plastic deformation gradient in the transition zone of welded joints increases. The incongruity of plastic deformation compatibility in the transition region would cause stress concentration. Therefore, the interface on both sides of the joint is favorable for crack propagation, which makes the shear fracture mode change into the plug fracture mode.
KW - Electric pulse treatment
KW - Interfacial bonding
KW - Mechanical properties
KW - Microstructural evolution
KW - Probeless friction stir spot welded (P-FSSW) joints
UR - http://www.scopus.com/inward/record.url?scp=85169805309&partnerID=8YFLogxK
U2 - 10.1016/j.matchar.2023.113276
DO - 10.1016/j.matchar.2023.113276
M3 - 文章
AN - SCOPUS:85169805309
SN - 1044-5803
VL - 205
JO - Materials Characterization
JF - Materials Characterization
M1 - 113276
ER -