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Research Articles

Study on milling behavior of TiAlN coated tool with variable distribution density micro-texture

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References

  • Bibeye, J.R.; Krishnaraj, V.; Geetha, P.B. (2022) Investigation on influence of micro-textured tool in machining of Ti-6Al-4V alloy. Journal of Mechanical Science and Technology, 36(4)1987–1995. doi:10.1007/S12206-022-0334-0
  • Duan, Z.; Chen, L.; Li, B. (2022) Effect of micro-textured morphology with different wettabilities on tool cutting performance. The International Journal of Advanced Manufacturing Technology, 123(5-6)1745–1754. doi:10.1007/S00170-022-10284-2
  • He, C.S. (2019) Research on thermal-mechanical coupling behavior of micro-textured ball-end milling cutter in milling process. Harbin University of Science and Technology. https://0x9.me/ztivf
  • Kümmel, J.; Braun, D.; Gibmeier, J.; Schneider, J.; Greiner, C.; Schulze, V.; Wanner, A. (2015) Study on micro texturing of uncoated cemented carbide cutting tools for wear improvement and built-up edge stabilisation. Journal of Materials Processing Technology, 215:62–70. doi:10.1016/j.jmatprotec.2014.07.032
  • Li, Q.; Yang, S.; Zhang, Y.; Zhou, Y.; Cui, J. (2018) Evaluation of the machinability of titanium alloy using a micro-textured ball end milling cutter. The International Journal of Advanced Manufacturing Technology, 98(5-8):2083–2092. doi:10.1007/s00170-018-2319-9
  • Li, B.B.; Chen, L.; Zhao, W.; Yu, M.; Zhang, K. (2020) Simulation study on texture parameter optimization of micro-textured tool. Modern Manufacturing Engineering, 481(10):91. doi:10.16731/j.cnki.1671-3133.2020.10.016
  • Liu, X.C. (2018) Design and manufacture of surface stepped micro-texture tool and its cutting performance research. Qingdao: Qingdao Technological University. https://0x9.me/Kb6Q3
  • Liu, X. (2021) Accurate preparation of mesoscopic geometric features of ball-end milling cutter and optimization of cutting performance. Harbin University of Science and Technology. doi:10.27063/d.cnki.ghlgu.2020.000757.
  • Lu, Z.Y.; Yang, X.F.; Wang, S.R.; Wang, Y.J.; Wu, Y.B.; Chen, H.L. (2018) Dynamic pressure lubrication and friction reduction characteristics of triangular groove textured cemented carbide working surface. Tribology Journal, 38(5):537–546. doi:10.16078/j.tribology.2018.05.006
  • Niketh, S.; Samuel, G.L. (2018) Drilling performance of micro textured tools under dry, wet and MQL condition. Journal of Manufacturing Processes, 32:254–268. doi:10.1016/j.jmapro.2018.02.012
  • Su, Y.; Li, L.; Wang, G.; Zhong, X. (2018) Cutting mechanism and performance of high-speed machining of a titanium alloy using a super-hard textured tool. Journal of Manufacturing Processes, 34:706–712. doi:10.1016/j.jmapro.2018.07.004
  • Tong, X.; Yang, S.C.; He, C.S.; Zheng, M.L. (2019) Multi-objective optimization of cutting performance of variable density micro-texture ball-end milling cutter. Journal of Mechanical Engineering, 55(21):221–232.https://0x9.me/PLyJM
  • Tong, X.; Yu, S. (2020) Influence of micro-textured parameters on cutting performance and chip formation of milling Ti6Al4V. Journal of Mechanical Science and Technology, 34(9):3767–3774. doi:10.1007/s12206-020-0828-9
  • Tong, X.; Shen, J.N.; Su, S. (2021) Properties of variable distribution density of micro-textures on a cemented carbide surface. Journal of Materials Research and Technology, 15:1547–1561. doi:10.1016/J.JMRT.2021.08.051
  • Tong, X.; Qu, Q. (2023) Optimizing the micro-texture and cutting parameters of ball-end milling cutters to achieve milling stability. Proceedings of the Institution of Mechanical Engineers, Part EJournal of Process Mechanical Engineering, 237(2):326–335. doi:10.1177/09544089221104073
  • Usman, M.M.; Zou, P.; Yang, Z.Y.; Lin, T.Y.; Muhammad, I. (2022) Evaluation of micro-textured tool performance in ultrasonic elliptical vibration-assisted turning of 304 stainless steel. The International Journal of Advanced Manufacturing Technology, 121(7-8):4403–4418. doi:10.1007/S00170-022-09539-9
  • Wu, Y.; Yang, H.Z.; Sun, Q.Y.; Chen, H.; Xia, S.Y. (2023) Research status of TiCN, TiAlN, TiAlCN coatings. Material Protection, 56(09). doi:10.16577/j.issn.1001-1560.2023.0206
  • Yang, S.C.; Guo, C.Y.; Ren, W. (2022) Research on optimization of milling performance of V-groove micro-texture ball-end milling cutter. Journal of Mechanical Science and Technology, 36(6):2849–2860. doi:10.1007/S12206-022-0517-8
  • Yu, X.; Wang, Y.G.; Lv, D.J.; Ye, Z.; Gao, Y. (2022) Study on machining characteristics with variable distribution density micro-texture tools in turning superalloy GH4202. The International Journal of Advanced Manufacturing Technology, 123(1-2):187–197. doi:10.1007/S00170-022-10117-2
  • Zhang, Y.H.; Sun, T.; Song, W.B. (2022) Parameter optimization of ball-end milling cutter with blunt-round edge and micro-texture on flank. Ferroelectrics, 593(1):132–144. doi:10.1080/00150193.2022.2076441
  • Zhu, Z.J.; Sun, X.H.; Guo, K.; Sun, J.; Li, J.F. (2022) Recent advances in drilling tool temperaturea state-of-the-art review. Chinese Journal of Mechanical Engineering, 35(1):40–79. doi:10.1186/S10033-022-00818-W

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