Configuration analysis of five-axis machine tools using a generic kinematic model

International Journal of Machine Tools and Manufacture - Tập 44 - Trang 1235-1243 - 2004
O.Remus Tutunea-Fatan1, Hsi-Yung Feng1
1Department of Mechanical and Materials Engineering, University of Western Ontario, London, Ont., Canada N6A 5B9

Tài liệu tham khảo

Tsutsumi, 2003, Identification and compensation of systematic deviations particular to 5-axis machining centers, International Journal of Machine Tools and Manufacture, 43, 771, 10.1016/S0890-6955(03)00053-1 Campshure, 1997, Mapping your way to five-axis machining, Modern Machine Shop, 70, 98 Zelinski, 1999, Four types of five-axis machining centers, Modern Machine Shop, 71, 94 Denavit, 1955, A kinematic notation for lower-pair mechanisms based on matrices, ASME Journal of Applied Mechanics, 22, 215, 10.1115/1.4011045 Paul, 1981 Reshetov, 1988 Suh, 1998, Five-axis part machining with three-axis CNC machine and indexing table, ASME Journal of Manufacturing Science and Engineering, 120, 120, 10.1115/1.2830087 Bohez, 2000, Adaptive nonlinear tool path optimization for five-axis machining, International Journal of Production Research, 38, 4329, 10.1080/00207540050205127 Liang, 2002, A combined 3D linear and circular interpolation technique for multi-axis CNC machining, ASME Journal of Manufacturing Science and Engineering, 124, 305, 10.1115/1.1445154 Kiridena, 1993, Mapping the effects of positioning errors on the volumetric accuracy of five-axis CNC machine tools, International Journal of Machine Tools and Manufacture, 33, 417, 10.1016/0890-6955(93)90049-Z Mahbubur, 1997, Positioning accuracy improvement in five-axis milling by post processing, International Journal of Machine Tools and Manufacture, 37, 223, 10.1016/0890-6955(95)00091-7 Bohez, 2002, Compensating for systematic errors in 5-axis NC machining, Computer-Aided Design, 34, 391, 10.1016/S0010-4485(01)00111-7 D. McKillop, Postprocessor considerations in multi-axis machining, Modern Machine Shop Online Supplement, March 1999. Available from: http://www.mmsonline.com/articles/0399sup.html (cited March 3, 2004). Takeuchi, 1992, Generation of 5-axis control collision-free tool path and postprocessing for NC data, Annals of the CIRP, 41, 539, 10.1016/S0007-8506(07)61263-3 Lee, 1997, Developing a postprocessor for three types of five-axis machine tools, International Journal of Advanced Manufacturing Technology, 13, 658, 10.1007/BF01350824 Jung, 2002, NC post-processor for 5-axis milling machine of table-rotating/tilting type, Journal of Materials Processing Technology, 130–131, 641, 10.1016/S0924-0136(02)00725-2 Cheng, 2002, Studies on the combination of the forward and reverse postprocessor for multiaxis machine tools, Journal of Engineering Manufacture, 216, 77, 10.1243/0954405021519717 Pei, 2002, NC post processing for conventional machines and parallel kinematic machines Arnone, 1997, Mulling over the fifth axis: how and why to buy a five-axis machine tool, Metlfax, 41, 122 Suh, 1998, Multiaxis machining with additional-axis NC system: theory and development, International Journal of Advanced Manufacturing Technology, 14, 865, 10.1007/BF01179075 Bohez, 2002, Five-axis milling machine tool kinematic chain design and analysis, International Journal of Machine Tools and Manufacture, 42, 505, 10.1016/S0890-6955(01)00134-1 Ishizawa, 1991, Form shaping function model of 5-axis machine tools—classification of 5-axis machine tools based on form shaping functions, 64 Warkentin, 2001, Computer aided 5-axis machining Sakamoto, 1993, Analysis of generating motion for five-axis machining centers, Transactions of NAMRI/SME, 21, 287 Chen, 2001, On the structural configuration synthesis and geometry of machining centres, Journal of Mechanical Engineering Science, 215, 641, 10.1243/0954406011524018 Rao, 2000, On local gouging in five-axis sculptured surface machining using flat-end tools, Computer-Aided Design, 32, 409, 10.1016/S0010-4485(99)00105-0