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A Study on the Analysis of Optimal Working Condition for Constant Temperature Laser MCT(LAM) Combined Machining

항온 Laser MCT(LAM) 복합 가공의 최적 가공 조건 해석

  • Jeong-Ho Park (School of Smart Mechanical automobile Engineering, Changwon Moonsung University) ;
  • Gwi-Nam Kim (Department of Mechanical and Automotive Engineering, Suncheon Jeil College)
  • Received : 2023.11.06
  • Accepted : 2023.11.30
  • Published : 2023.12.31

Abstract

Ti-alloy, a high-strength alloy material among the materials used in aircraft that are trending toward lighter weight, is classified as a difficult-to-cut material that requires a lot of energy for cutting. Cutting in a high-temperature environment is considered one means of making this possible, and various studies have been conducted on it. In particular, research on LAM (Laser Assisted Machining (LAM)), which utilizes laser heating of the cutting area, is being actively conducted. Before processing of the milling cutter begins, the temperature is raised locally by the laser irradiated through the laser head carrier, and the resistance during milling is reduced. Therefore, in this paper, in order to derive such conditions, we performed heat transfer analysis according to transfer conditions and compared it with actually applied test data to use it to establish appropriate processing conditions.

Keywords

Acknowledgement

본 연구는 2021년도 산업통상자원부 및 한국산업기술진흥원(KIAT) 연구비지원에 의한 연구임(항공부품용 경량고강도 합금소재 형상가공설계 및 공정기술 개발, 과제번호: 제2021-228호-005).

References

  1. J. H. Park, S. H. Park, G. N. Kim "A Study on the Thermo-Mechanical coupling analysis to Working Condition of LAM", Journal of Korean Society of Industry Convergence, Vol25(No.6), pp1127-1134, (2022).
  2. Y. Altintas, P. Lee, "A General Mechanics and Dynamics Model for Helical End Mills", Department of mechanical Engineering, The University of British Columbia, Vancouver, Canada Received on January 9, (1996).
  3. O. Gonzalo, J. Breistain, H. Jauregi, C. Sanz, "A method for the identification of the specific force coefficients for mechanistic milling simulation", International Journal of Machine Tools & Manufacture, Vol.50, 765-774, (2010). https://doi.org/10.1016/j.ijmachtools.2010.05.009
  4. H. Ding, Y. C. Shin, "Laser-assisted machining of hardened steel parts with surface integrity analysis", International Journal of Machine Tools & Manufacture, Vol.50, pp. 106-114. (2010). https://doi.org/10.1016/j.ijmachtools.2009.09.001
  5. Wu. Baohai, Yan. Xue, Luo. Ming, Gao. Ge, "Cutting force prediction for circular end milling process", Chinese Journal of Aeronautics, Vol.26(4), pp. 1057-1063, (2012). https://doi.org/10.1016/j.cja.2013.04.003
  6. M. S. Sim, C. M. Lee, "A study on laser assisted machining according to tool path inclination angle of inclined workpiece and workpiece with rotated angle with respect to 2-axes", Master thesis, Changwon National University, (2014).
  7. N. H. Cha, C. M. Lee, "A study on the effect of laser preheating for Silicon nitride in laser assisted turn-mill. Master thesis", Changwon National University, (2013).
  8. K. S. Kim, C. M. Lee, "A study on the effect of laser preheating in laser assisted machining of planar plates", Master thesis, Changwon National University, (2012).