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Plunge Milling Force Model using Instantaneous Cutting Force Coefficients  

Ko Jeong-Hoon (Department of Mechanical, The University of British Columbia)
Publication Information
Abstract
Plunge milling process is used for machining hole and is widely used in aerospace, automobile, and die/mold industries. The cutter is fed in the direction of spindle axis which has the highest structural rigidity. The kinematics of plunge milling differs from the traditional turning and milling in aspect of tool engagement and chip generation. This paper proposes the mechanistic cutting force model for plunge milling. Uncut chip thickness is calculated using the present cutter edge position and the previous cutter edge position. Instantaneous cutting force coefficients, which depend only on instantaneous uncut chip thickness, are derived based on the mechanistic approach. The developed cutting force model is verified through comparison of the predicted and the measured cutting forces.
Keywords
Plunge milling process; Cutting force model; Uncut chip thickness; Nonlinear cutting force coefficients;
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  • Reference
1 Altintas, Y., 'Manufacturing Automation: Metal Cutting Mechanics, Machine Tool Vibrations, and CNC Design,' Cambridge University Press, 2000
2 Wakaoka, S., Yamane, Y., Sekiya, K. and Narutaki, N., 'Highspeed and high-accuracy plunge cutting for vertical walls,' Journal of Materials Processing Technology, Vol. 127, No.2, pp. 246-250, 2002   DOI   ScienceOn
3 Li, Y., Liang, S. Y., Petrof, R. C. and Seth, B. B., 'Force Modelling for Cylindrical Plunge Cutting,' International Journal of Advanced Manufacturing Technology, Vol. 16, No. 12, pp. 863-870, 2004   DOI   ScienceOn
4 Ko, J. H. and Cho, D. W., '3D Ball-End Milling Force Model Using Instantaneous Cutting Force Coefficients,' Transactions of the ASME, Journal of Manufacturing Science and Engineering, Vol. 127, No.1, pp. 1-12,2005   DOI   ScienceOn