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슬라이딩 모드 제어기를 이용한 밀링공정의 절삭력 제어

Cutting Force Regulation in Milling Process Using Sliding Mode Control

  • 발행 : 2001.08.01

초록

Recent noticeable advances of CNC machine tools have considerably improved productivity and precision in manufacturing processes. However, in the respect of productivity some defects still remain because selection of machining conditions entirely depends on the experiences of programmers. Usually, machining conditions such as feed rate and spindle speed have been selected conservatively by considering the worst cases, and it has brought the loss of machining efficiency. Thus, the improvement of cutting force controller has been done to regulate cutting force constantly and to maximize feedrate simultaneously in case that machining conditions change variously. In this study, sliding mode control with boundary layer is applied to milling process for cutting force regulation and in a commercial CNC machining center data transfer between PC and PMC (programmable machine controller) of CNC machine is done using a standard interface method. And in the cutting force measurement, an indirect cutting force measuring system using current signal of AC servo is adopted in order not to use high-priced equipment like tool dynamometer. The purpose of this study is to maximize the productivity in milling process, thus its results can be applied to cases such as rough cutting process.

키워드

참고문헌

  1. Elbestawi, M. A., Mohamed , Y. and Liu, L., 1990, 'Application of Some Parameter Adaptive Control Algorithms in Machining,' Journal of Dynamic Systems, measurement, and Control, Vol. 112, pp. 611-617
  2. Elbertawi, M. A. and Sagherian, R., 1987, 'Parameter Adaptive Control in Peripheral Milling,' Int. J. Mech. Tools Manufact., Vol. 27, No. 3, pp. 399-414 https://doi.org/10.1016/S0890-6955(87)80012-3
  3. Rober, S. J. and Shin, Y. C., 1996, 'Control of Cutting Force for End milling Processes Using an Extended Model Reference Adaptive Control Scheme,' Journal of Manufacturing Science and Engineering, Vol. 118, pp. 339-347
  4. Fussell, B. K. and Srinivasan, K., 1991, 'Adaptive Control of Force in End Milling Operations - An Evaluating of Available Algorithms,' Journal of Manufacturing Systems, Vol. 10, No. 1, pp. 8-20
  5. Altintas, Y., 1992, 'Prediction of Cutting Forces and Tool Breakage in Milling from Feed Drive Current Measurements,' Journal of Engineering for Industry, Vol. 114, pp. 386-392
  6. Fussell, B. K. and Srinivasan, K., 1989, 'On-Line Identification of End Milling Process Parameters,' Journal of Engineering for Industry, Vol. 111, pp. 322-330
  7. Lauderbaugh, L. K. and Ulsoy, A. G., 1989, 'Model Reference Adaptive Force Control in Milling,' Journal of Engineering for Industry, Vol. 111, pp. 13-21
  8. Kline, W. A., Devor, R. E. and Lindberg, J. R., 1981, 'The Prediction of Cutting Forces in End Milling with Application to Cornering Cuts,' Int. J. Mach. Tool Des. Res., Vol. 22, No. 1, pp. 7-22 https://doi.org/10.1016/0020-7357(82)90016-6
  9. 김태용, 1995, '견실한 적응제어기를 이용한 절삭력 제어에 관한 연구,' 서울대학교 공학박사학위논문
  10. Park, Y. B., Kim, T. Y. and Kim, J.W., 1998, 'Sliding mode cutting force regulator for turning process,' International Journal of Machine tools & Manufacture, Vol. 38, pp. 911-930 https://doi.org/10.1016/S0890-6955(97)00132-6
  11. Slotine, J. J. and Li, W., 1991, Applied Nonlinear Control, Prentice Hall
  12. Chang, Y. F. and Chen, B. S., 1998, 'The VSS Controller Design and Implementation for The Constant Turing Force Adaptive Control System,' Int. J. Mach. Tools Manufact., Vol. 28, No. 4, pp. 373-387 https://doi.org/10.1016/0890-6955(88)90051-X
  13. 김승철, 정성종, 1998, '밀링공정에서 이송모터와 주축모터를 이용한 절삭력 추정,' 대한기계학회논문집, 제22권, 제11호, pp. 2029-2038
  14. 이성조, 남원우, 고정한, 이기택, 1998, 공작 기계 모니터링 기술개발 보고서, 기아중공업, pp. 15-18