Adaptronic gantry machine tool with piezoelectric actuator for active error compensation of structural oscillations at the tool centre point

Mechatronics - Tập 18 - Trang 426-433 - 2008
Guido Stöppler1, Steve Douglas2
1Siemens AG, Industry Sector, Frauenauracher Street 80, 91056 Erlangen, Germany
2Liverpool John Moores University, School of Engineering, Byrom Street, L3 3AF Liverpool, United Kingdom

Tài liệu tham khảo

Chen, 2000, A ballscrew drive mechanism with piezo-electric nut for preload and motion control, Int J Machine Tool Manufact, 40, 513, 10.1016/S0890-6955(99)00078-4 Chiu WM, Chan KW. Development of active error-compensation boring bar for precision machining. In: Proceedings of first Asia-Pacific and second Japan–China international conference on progress of cutting and grinding; 1994. p. 354–9. Chiu, 2002, An overhung boring bar servo system for on-line correction of machining errors, J Mater Process Technol, 122, 286, 10.1016/S0924-0136(01)01183-9 Denkena B, Harms A, Hesse P. Adaptronische Werkzeugadapter zur aktiven Schwingungsdämpfung in CNC-Drehmaschinen. In: Adaptronic congress; 2004. p. 1–8. Elmustafa, 2001, Flexural-hinge guided motion nanopositioner stage for precision machining: finite element simulation, J Int Soc Precision Eng Nanotechnol, 25, 71 Glaser S, Hesselbach J, Ispa S, Pietsch I, Kohlrautz D, Siebald H, et al. Aktive Schwingungsdämpfung bei Glasschneidemaschinen. In: Adaptronic congress; 2002. p. 1–5. Glöss, 1999, Systeme zur Nanopositionierung Teil 1: mechanik – antriebe – messverfahren, Mechatronik (F&M), 107, 64 Glöss, 2000, Systeme zur Nanopositionierung Teil 2: steuer – und regelungstechnik von piezosystemen, Mechatronik (F&M), 108, 72 Hanson RD, Tsao TC. Development of a fast tool servo for variable-depth-of-cut machining. In: Dynamic systems and control. ASME international mechanical engineering congress and exposition, DSC-Vol. 55-2; 1994. p. 863–71. Hara, 1990, A new micro cutting device with high stiffness and resolution, Annals CIRP, 39, 375, 10.1016/S0007-8506(07)61076-2 Heinemann G, Papiernik W. Direct linear servo drives for machine tool applications. In: 17th PCIM conference proceedings – Intelligent Motion, PCIM concefernce Europe, Nürnberg; 1997. p. 93–102. Kim, 1998, Waviness compensation of precision machining by piezoelectric micro cutting device, Int J Machine Tool Manufact, 38, 1305, 10.1016/S0890-6955(97)00080-1 Kim, 1995, An improvement of positioning accuracy by use of piezoelectric voltage in piezoelectric driven micropositioning system simulation, Mech Machine Theory, 30, 819, 10.1016/0094-114X(95)00016-R Kim, 1987, In-process control of cylindricity in boring operations, J Eng Industry, 109, 291, 10.1115/1.3187131 King, 1990, Piezoelectric ceramic actuators: a review of machinery applications, Precision Eng, 12, 131, 10.1016/0141-6359(90)90084-C Kuhnen, 2003, Modelling, identification and compensation of complex hysteretic nonlinearities – a modified Prandtl-Ishlinskii approach, European J Control, 9, 407, 10.3166/ejc.9.407-418 Li, 1996, To improve workpiece roundness in precision diamond turning by in situ measurement and repetitive control, Mechatroncis, 6, 523, 10.1016/0957-4158(95)00084-4 Lockwood S, Haase F, Form DG. Active vibration control of machine tool structures – part 1: Dsp algorithms. In: Proceedings Lamdamap, University of Huddersfield; 2003a. p. 441–60. Lockwood S, Haase F, Form DG. Active vibration control of machine tool structures – part 2: An experimental active-vibration control system. In: Proceedings Lamdamap, University of Huddersfield; 2003b. p. 441–60. Naslin, 1968 Okazaki, 1993, Duo-servo mechanical stage for continuous positioning, Int J Japan Soc Prec Eng, 27, 172 Okazaki, 1990, A micro-positioning tool post using a piezoelectric actuator for diamond turning machines, Precision Eng, 12, 151, 10.1016/0141-6359(90)90087-F Pahk, 2001, Ultra precision positioning system for servo motor – piezo actuator using dual servo loop and digital filter implementation, Int J Machine Tool Manufact, 41, 51, 10.1016/S0890-6955(00)00061-4 Patterson, 1985, Designing and testing of a fast tool servo for diamond turning, Precision Eng, 7, 123, 10.1016/0141-6359(85)90030-3 Pettersson L, Hakansson L, Claesson I, Olsson S. Adaptive control of machine-tool vibration based on an active tool holder shank with an embedded piezo ceramic actuator. In: International congress and exhibition on noise control engineering, The Hague, Netherlands; 2001. p. 947–52. Stöppler, G. Active compensation of structural oscillations on high dynamic gantry machines. PhD thesis, Liverpool John Moores University; 2005. ISBN 3-8322-4690-8. Tanaka, 1994, Active chatter suppression of slender boring bar using piezoelectric actuators, JSME Int J Series C, 37, 601 Tönshoff, 2002, Piezoelectric actuator based preload control unit for machine tool spindles, Prod Eng, 9, 117 Weck M, Zimmerschitt-Halbig P, Wetter O, Börner U, Henning J. Adaptronische systeme für den Werkzeugmaschinenbau. In: Adaptronic congress; 2003. p. 1–7. Wu, 1989, Precision machining without precision machinery, Annals CIRP, 38, 533, 10.1016/S0007-8506(07)62762-0 Xu, 1999, Piezoelectric actuator based active error compensation of precision machining, Meas Sci Technol, 10, 106, 10.1088/0957-0233/10/2/008 Zhu, 2001, A fast tool servo design for precision turning of shafts on conventional cnc lathes, Int J Machine Tool Manufact, 41, 953, 10.1016/S0890-6955(00)00118-8