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徐道春
2023-05-06 12:03
  • 徐道春
  • 徐道春 - 教授-北京林业大学-工学院-个人资料

近期热点

资料介绍

个人简历


教育背景
2005. 09-2010.01 清华大学 机械工程 博士
2000.09- 2003/03 燕山大学 机械工程 硕士
1996.09- 2000.07 燕山大学 机械工程 学士

近期论文


论文
Hao Mohan, Xu Daochun*, Wei Fuqiang, Li Qingqing. Quantitative analysis of frictional behavior of cupronickel B10 at the tool-chip interface during dry cutting. Tribology International, 118:163-169, 2018. (SCI: FT2VS, IF=2.903; EI 20174104255430)
Xu Mengjiao, Tian Cheng, Xu Daochun*. Viscoelastic behaviors and microstructure of Sapindus mukorossi pericarp for different moisture Contents. Bioresources, 14(2): 3961-3974, 2019. (SCI: HW1NG, IF1.202)
Hao Mohan, Xu Daochun*, Feng Pingfa. Numerical and experimental investigation of the shear angle in high-speed cutting of Al6061-T6. The International Journal of Advanced Manufacturing Technology, 100(9-12): 3037-3044, 2019. (SCI:HK9KO, IF2.601; EI 20184406013831)
Xie Zhi, Xu Daochun*, Cui Ziyi, Li Miaoxuan. Evaluation of a cutting simulation using a cupronickel B10 constitutive model considering the deformation temperature. Journal of Mechanical Science and Technology, 33(3): 1349-1356, 2019.(SCI:HO9RB, IF1.194)
Lei Ning, Xu Daochun*. Deformation temperature and material constitutive model of cupronickel B10. Journal of Mechanical Science and Technology. 31(8):3761-3767, 2017. (SCI: FE1VS, IF=1.128; EI 20173404074785)
Ke Qingchan, Xu Daochun*, Xiong Danping. Cutting zone area and chip morphology in high-speed cutting of titanium alloy Ti-6Al-4V. Journal of Mechanical Science and Technology. 31(1), 309-316, 2017. (SCI: EI2PB, IF=1.128; EI 20170403268563)
Xu Daochun, Feng Pingfa, Li Wenbin, Xu Chao, Ma Yuan. A friction model having multiple factors for high-speed cutting of aluminum alloy 6061-T6. International Journal of Advanced Manufacturing Technology, 84(9-12), 1941-1951, 2016. (SCI: DM6LB, IF=2.209)
Xu Daochun, Feng Pingfa, Li Wenbin, Ma Yuan. An improved material constitutive model and construction method for High-speed cutting of 6061-T6 aluminum alloy. International Journal of Advanced Manufacturing Technology, 79(5-8), 043-1053, 2015. (SCI: CL9FX, IF=1.458; EI 20150900575531)

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