References
-
Mason, F., "5
$\times$ 5 for High-productivity Airfoil Milling", American Machinist, Nov, pp. 37-39, 1991 - Tonshoff, H.K. and Hernaadex-Camacho, J., "Die Manufacturing by 5-and 3-Axis Milling", J. of Mechanical Working Technology, Vol. 20, pp. 105-119, 1989 https://doi.org/10.1016/0378-3804(89)90022-3
- Takeuchi, Y. and Watanbe, T., "Generation of 5 Axis Control Collision-free Tool Path and Postprocessing for NC Data", Anals of the CIRP, Vol. 41/1/1992, pp. 535-542, 1992
- Choi, B.K., Park, J.W. and Jun, C.S., "Cutter-location Data Optimization in 5-Axis Surface Machining", Computer Aided Design, Vol. 25, No. 6, pp. 377-386, 1993 https://doi.org/10.1016/0010-4485(93)90033-K
- Gursoz, E.L., Choi, Y. and Prinz, F.B., "Boolean Set Operations on Non-manifold Boundary Representation Objects", Computer-Aided Design, Vol. 23, No. 1, pp. 33-39, 1991 https://doi.org/10.1016/0010-4485(91)90097-G
- Lee, K. and Kwon, B.W., "Efficient Modeling Method of Sheet Objects", Proc. ASME Computers in Engineering Conference, San Francisco, CA, Vol. 1, pp. 437-446, August 2-3, 1992
- 김찬봉, 양민양, "5축 CNC 가공의 검증에 관한 연구", 대한기계학회논문집, Vol. 18, No. 1, pp.93-100, 1994
- Hool T.V., "Real Time Shaded NC Milling Display", Computer Graphics, Vol. 20, No. 4, pp.15-20, 1986 https://doi.org/10.1145/15886.15887
- Takata S., Tsai M.D. and Inui, M., "A Cutting Simulation System for Machinability Evaluation Using a Workpiece Model", Annals of the CIRP, Vol. 38, pp.417-420, 1989 https://doi.org/10.1016/S0007-8506(07)62736-X
- Waurzyniak, P., "Five-axis machining: adding a fifth axis can cut machine setups, and improve quality and productivity", Manufacturing Engineering, Vol. 132, No. 6, June 2004
- 강익수, 김석원, 김정석, 이기용, "사출금형의 5축 고속가공에서 공구자세에 따른 가공특성에 관한 연구", 한국공작기계학회 2006 추계학술대회논문집, pp.195-200, 2006
- Hopkin, B., "Benefits of positional five-axis machining", Moldmaking Technology, May 2005
- Toensmeier, P., "Five-axis machining is a key requirement for high-precision molds", Moldmaking Technology, December 2006
- Warkentin, A. and Ismail, F., "Multi-point tool positioning strategy for 5-axis machining of sculptured surfaces", CAGD, Vol. 17, pp. 83-100, 2000
- Makhanov, S., "Optimization and correction of the tool path of the five-axis milling machine: Part 1. Spatial optimization", Mathematics and Computers in Simulation, Vol. 75, pp. 210-230, 2007 https://doi.org/10.1016/j.matcom.2006.12.009
- Makhanov, S., "Optimization and correction of the tool path of the five-axis milling machine: Part 2. Rotations and setup", Mathematics and Computers in Simulation, Vol. 75, pp. 231-250, 2007 https://doi.org/10.1016/j.matcom.2006.12.001
- Ivanenko, S.A., Makhanov, S.S., and Munlin, M.A., "New numerical algorithms to optimize cutting operations of a five-axis milling machine", Applied Numerical Mathemactics, Vol. 49, pp. 395-413, 2004 https://doi.org/10.1016/j.apnum.2003.12.016
- Anotaipaiboon, W. and Makhanov, S.S., "Curvilinear space-filling curves for five-axis machining", Computer-Aided Design, Vol. 40, pp. 350-367, 2008 https://doi.org/10.1016/j.cad.2007.11.007
- Anotaipaiboon, W., Makhanov, S.S., and Bohez, E. L. J., "Optimal setup for five-axis machining", International Journal of Machine Tools & Manufacture, Vol. 46, pp. 964-977, 2006 https://doi.org/10.1016/j.ijmachtools.2005.07.046
- Radzevich, S.P., Kinematic geometry of surface machining, CRC Press, 2008
- Lim, T.S., Lee, C.M., Kim, S.W., and Lee, D.W., "Evaluation of cutter orientations in 5-axis high speed milling of turbine blade", Journal of Materials Processing Technology, Vol. 130-131, pp. 401-406, 2002 https://doi.org/10.1016/S0924-0136(02)00745-8
- 큐빅테크, http://cubictek.com