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사이드 밀링 가공의 절삭력 측정 및 예측

Prediction and Measurement of Cutting Force in Side-Milling

  • Lee, Chang-Ho (Korea Advanced Institute of Science and Technology, Doosaninfracore) ;
  • Yang, Min-Yang (Korea Advanced Institute of Science and Technology)
  • 투고 : 2013.01.10
  • 심사 : 2013.05.09
  • 발행 : 2013.06.15

초록

There have been numerous studies on end milling processes. However, these have been restricted to the application of tools for special cutting purposes. A side milling cutter can handle long, deep, and open slots in a more efficient manner, and it provides the best stability and productivity for this type of milling. In this paper, a method to predict the cutting forces in side milling is described, and simulated cutting forces are compared with those obtained by cutting experiments. In particular, the side milling process easily generates relative motion between the tools and the workpiece because it produces intermittent cutting forces that cause vibrations over a wide frequency range. Therefore, the application of a dynamic cutting model instead of a static cutting model is appropriate to forecast the cutting forces more accurately.

키워드

참고문헌

  1. Kline, W. A., Devor, R. E. Lindberg, J. R., 1982, The Prediction of Cutting Forces in End Milling with Application to Cornering Cuts, Int. J. Machine Tools and Manufacture, 22:1 7-22.
  2. Klin,e, W. A., Devor, R. E., 1983, The Effect of Run Out on Cutting Geometry and Forces in End Milling, Int. J. Machine Tools and Manufacture, 23:2/3 123-140.
  3. Sutherland, J. W., 1988, Dynamic Model of the Cutting Force System in the End Milling Process, ASME Sensors and Controls for Manufacturing, PED-33, 53-62.
  4. Altintas, Y., Budak, E., 1995, Analytical Prediction of Stability Lobes in Milling, CIRP Annals-Manufacturing Technology, 44:1, 357-362. https://doi.org/10.1016/S0007-8506(07)62342-7
  5. Altintas, Y., Lee, P., 1996, A General Mechanics and Dynamics model for Helical End Mills, CIRP Annals - Manufacturing Technology, 45:1 59-64. https://doi.org/10.1016/S0007-8506(07)63017-0
  6. Wan, M., Zhang., W. H., Tan, G., Qin, G. H., 2007, New Cutting Forces Modelling Approach for Flat End Mill, Chinese Journal of Aeronautics, 20:3 282-288. https://doi.org/10.1016/S1000-9361(07)60045-4
  7. Schmitz, T., Smith, K. S., 2009, Machining dynamics: Frequency Response to Improved Productivity, Springer, New York, USA.
  8. Jung, S. C., Kim, K. W., 2004, A Study on the Cutting Forces Prediction Using Machining Theory in End Milling, Proceeding of the Korean Society of Mechanical Engineers, 928-933.
  9. Hwang, C. H., Cho, D. W., 1999, Chatter Prediction in End Milling Using Dynamic Cutting Force Modelling, Korean Society for Precision Engineering, 16:2 104-115.
  10. Ahn, S. H., Ko, J. H., Cho, D. W, 2003, Generalized Method for Constructing Cutting Force Coefficients Database in End Milling, Korean Society for Precision Engineering, 20:8 39-46.
  11. Budak, E., Altintas, Y., Armarego, E. J. A., 1996, Prediction of Milling Force Coefficients from Orthogonal Cutting Force Data, ASME Journal of Manufacturing Science and Engineering, 118:2 216-224. https://doi.org/10.1115/1.2831014
  12. Lee, S. Y., Im, Y. M., 2004, Prediction and Experiments of Cutting Force in End Milling, Transactions of the Korean Society of Machine Tool Engineers, 13:4 9-15.
  13. Kim, K. W., Joo, J. H., Lee, W. Y., Choi S. J., 2008, Modeling of Specific Cutting Pressure and Prediction of the Cutting Forces in Face Milling, Transactions of the Korean Society of Machine Tool Engineers, 17:5 116-122.
  14. Smiths, S., Tlusty, J., 1993, Efficient Simulation Programs for Chatter in Milling, Annals of the CIRP 42 463-466. https://doi.org/10.1016/S0007-8506(07)62486-X

피인용 문헌

  1. 밀링가공 시 절삭력 예측을 위한 시뮬레이션 연구 vol.41, pp.5, 2017, https://doi.org/10.3795/ksme-a.2017.41.5.353
  2. Labview 소프트웨어를 활용한 파이프 절단 파워 측정 및 검증 vol.18, pp.7, 2013, https://doi.org/10.9728/dcs.2017.18.7.1387