TY - JOUR
T1 - Microstructure evolution and mechanical properties of 2060 Al-Li alloy via friction stir additive manufacturing
AU - Jiang, Tao
AU - Jiao, Tao
AU - Dai, Guoqing
AU - Shen, Zhikang
AU - Guo, Yanhua
AU - Sun, Zhonggang
AU - Li, Wenya
N1 - Publisher Copyright:
© 2022
PY - 2023/2/15
Y1 - 2023/2/15
N2 - Aluminum has low evaporation temperature and high reactivity with oxygen, and it could cause a lot of challenges during traditional melt-based additive manufacturing (AM) process. However, as a solid-state technology, friction stir additive manufacturing (FSAM) is expected to avoid the melting-solidification during entire manufacturing and solve these defects eventually. In this study, the microstructure evolution and mechanical properties of 2060 aluminum lithium alloy manufactured via FSAM were carried out at various process parameters. The results indicate that the best combined parameter could be obtained at rotational speed as 1600 r/min, translational speed as 300 mm/min and splice rate as 80%. Due to dynamic recrystallization from plastic deformation and heat input, finer equiaxed grains with size between 2 and 5 µm could be obtained in the nugget zone and a maximum microhardness could reach 135 HV.
AB - Aluminum has low evaporation temperature and high reactivity with oxygen, and it could cause a lot of challenges during traditional melt-based additive manufacturing (AM) process. However, as a solid-state technology, friction stir additive manufacturing (FSAM) is expected to avoid the melting-solidification during entire manufacturing and solve these defects eventually. In this study, the microstructure evolution and mechanical properties of 2060 aluminum lithium alloy manufactured via FSAM were carried out at various process parameters. The results indicate that the best combined parameter could be obtained at rotational speed as 1600 r/min, translational speed as 300 mm/min and splice rate as 80%. Due to dynamic recrystallization from plastic deformation and heat input, finer equiaxed grains with size between 2 and 5 µm could be obtained in the nugget zone and a maximum microhardness could reach 135 HV.
KW - Aluminum lithium alloy
KW - Friction stir additive manufacturing
KW - Microhardness
KW - Microstructure evolution
UR - http://www.scopus.com/inward/record.url?scp=85142156569&partnerID=8YFLogxK
U2 - 10.1016/j.jallcom.2022.168019
DO - 10.1016/j.jallcom.2022.168019
M3 - 文章
AN - SCOPUS:85142156569
SN - 0925-8388
VL - 935
JO - Journal of Alloys and Compounds
JF - Journal of Alloys and Compounds
M1 - 168019
ER -