Volume 45 Issue 2
Mar.  2016
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Wu Hongbing, Shi Yunlong, Du Xue, Xiong Ruibin, Shi Song. Effects of electropulsing treatment on ultra-precision cutting of titanium alloy Ti6Al4V[J]. Infrared and Laser Engineering, 2016, 45(2): 220002-0220002(4). doi: 10.3788/IRLA201645.0220002
Citation: Wu Hongbing, Shi Yunlong, Du Xue, Xiong Ruibin, Shi Song. Effects of electropulsing treatment on ultra-precision cutting of titanium alloy Ti6Al4V[J]. Infrared and Laser Engineering, 2016, 45(2): 220002-0220002(4). doi: 10.3788/IRLA201645.0220002

Effects of electropulsing treatment on ultra-precision cutting of titanium alloy Ti6Al4V

doi: 10.3788/IRLA201645.0220002
  • Received Date: 2015-06-18
  • Rev Recd Date: 2016-01-15
  • Publish Date: 2016-02-25
  • Titanium alloy is well known with difficult machinability, which limits its application in many fields unavoidably. In the current study, electric pulse treatment(EPT) was firstly employed to treatment the titanium alloy. The microstructure and mechanical properties had been changed after the treatment. It is found that EPT technology can improve plasticity of titanium alloy, and the hardness, elasticity modulus and yield stress of titanium alloy will decrease after EPT. The result of cutting test proves that the EPT can decrease the cutting force and improve the surface quality.
  • [1] Ayed Y, Germain G, Ammar A, et al. Tool wear analysis and improvement of cutting conditions using the high-pressure water-jet assistance when machining the Ti17 titanium alloy[J]. Precision Engineering, 2015, 42(15):294-301.
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    [3] Li Junqi, Zhang Yunlong, Su Jun, et al. Turning of DOE Ge single crystal with micro-circle diamond tool[J]. Infrared and Laser Engineering, 2013, 42(11):3053-3058.(in Chinese)李军琪, 张云龙, 苏军, 等. 微圆弧金刚石刀具车削锗单晶衍射元件[J]. 红外与激光工程, 2013, 42(11):3053-3058.
    [4]
    [5] Wu Hongbing, Wang Peng. Simulative and experimental investigation on ultra-precision cutting of titanium alloy[J]. Infrared and Laser Engineering, 2014, 43(12):3988-3993.(in Chinese)吴红兵, 王朋. 钛合金超精密切削过程的数值模拟与实验分析[J]. 红外与激光工程, 2014, 43(12):3988-3993.
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    [7] Yang D, Liu Z Q. Surface topography analysis and cutting parameters optimization for peripheral milling titanium alloy Ti-6Al-4V[J]. International Journal of Refractory Metals and Hard Materials, 2015, 51:192-200.
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    [9] Wang Yi, Yu Jingchi. Compensitionk method for ultra precision turning error of high relative aperture surface based on coefficients of Zernike polynominal[J]. Infrared and Laser Engineering, 2012, 41(3):724-728.(in Chinese)王毅, 余景池. 基于泽尼克多项式系数的大相对孔径表面超精密车削误差的补偿方法[J]. 红外与激光工程, 2012, 41(3):724-728.
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    [11] Zhu R F, Jiang Y B, Guan L, et al. Difference in recrystallization between electropulsing-treated and furnace-treated NiTi alloy[J]. Journal of Alloys and Compounds, 2016, 658:548-554.
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    [13] Huang Y Y, Cheng X, Fan H B, et al. Crystallization of a Ti-based bulk metallic glass induced by electropulsing treatment[J]. Journal of Iron and Steel Research, 2016, 23:69-73.
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    [15] Ye X X, Wang L S, Tse Z T H, et al. Effects of high-energy electro-pulsing treatment on microstructure, mechanical properties and corrosion behavior of Ti-6Al-4V alloy[J]. Materials Science and Engineering:C, 2015, 49:851-860.
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    [18] Ye X X, Tse Z T H, Tang G Y, et al. Influence of electropulsing globularization on the microstructure and mechanical properties of Ti-6Al-4V alloy strip with lamellar microstructure[J]. Materials Science and Engineering:A, 2015, 622:1-6.
    [19] Wang Fuchi, Huo Dongmei, Li Shukui, et al. Inducing TiAl3 in titanium alloys by electric pulse heat treatment improves mechanical properties[J]. Journal of Alloys and Compounds, 2013, 550:133-136.
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Effects of electropulsing treatment on ultra-precision cutting of titanium alloy Ti6Al4V

doi: 10.3788/IRLA201645.0220002
  • 1. College of Mechanical and Energy Engineering,Ningbo Institute of Technology,Zhejiang University,Ningbo 315100,China;
  • 2. Zhejiang Provincial Key Lab of Part Rolling Technology,Ningbo 315100,China;
  • 3. State Key Laboratory in Ultra-precision Machining Technology,The Hong Kong Polytechnic University,Hong Kong 999077,China;
  • 4. Ningbo Polytechnic,Ningbo 315800,China;
  • 5. Tianjin Jinhang Institute of Technical Physics,Tianjin 300308,China

Abstract: Titanium alloy is well known with difficult machinability, which limits its application in many fields unavoidably. In the current study, electric pulse treatment(EPT) was firstly employed to treatment the titanium alloy. The microstructure and mechanical properties had been changed after the treatment. It is found that EPT technology can improve plasticity of titanium alloy, and the hardness, elasticity modulus and yield stress of titanium alloy will decrease after EPT. The result of cutting test proves that the EPT can decrease the cutting force and improve the surface quality.

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