State dependent regenerative stability and surface location error in peripheral milling of thin-walled parts

International Journal of Mechanical Sciences - Tập 196 - Trang 106294 - 2021
Jinbo Niu1, Jinjie Jia1, Ruoqi Wang1, Jinting Xu2, Yuwen Sun1, Dongming Guo1
1Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education, School of Mechanical Engineering, Dalian University of Technology, Dalian 116024, China
2School of Automotive Engineering, Dalian University of Technology, Dalian 116024, China

Tài liệu tham khảo

Munoa, 2016, Chatter suppression techniques in metal cutting, CIRP Ann–Manuf Technol, 65, 785, 10.1016/j.cirp.2016.06.004 Zhu, 2020, Recent progress of chatter prediction, detection and suppression in milling, Mech Syst Signal Process, 143, 10.1016/j.ymssp.2020.106840 Koike, 2013, Design method of material removal process for minimizing workpiece displacement at cutting point, CIRP Ann, 62, 419, 10.1016/j.cirp.2013.03.144 Yang, 2015, Milling vibration attenuation by eddy current damping, Int J Adv Manuf Technol, 81, 445, 10.1007/s00170-015-7239-3 Ma, 2017, Stability improvement and vibration suppression of the thin-walled workpiece in milling process via magnetorheological fluid flexible fixture, Int J Adv Manuf Technol, 88, 1231, 10.1007/s00170-016-8833-8 Hayasaka, 2018, Proposal of ‘accelerative cutting’ for suppression of regenerative chatter, CIRP Ann, 67, 401, 10.1016/j.cirp.2018.04.030 Totis, 2019, Symmetry breaking in milling dynamics, Int J Mach Tools Manuf, 139, 37, 10.1016/j.ijmachtools.2019.01.002 Rusinek, 2016, Dynamics of thin-walled element milling expressed by recurrence analysis, Meccanica, 51, 1275, 10.1007/s11012-015-0293-y Qu, 2016, Three-dimensional stability prediction and chatter analysis in milling of thin-walled plate, Int J Adv Manuf Technol, 86, 2291, 10.1007/s00170-016-8357-2 Wang, 2019, Milling stability analysis with considering process damping and mode shapes of in-process thin-walled workpiece, Int J Mech Sci, 159, 382, 10.1016/j.ijmecsci.2019.06.005 Jin, 2016, 3D stability lobe considering the helix angle effect in thin-wall milling, Int J Adv Manuf Technol, 82, 2123, 10.1007/s00170-015-7570-8 Budak, 2012, Prediction of workpiece dynamics and its effects on chatter stability in milling, CIRP Ann, 61, 339, 10.1016/j.cirp.2012.03.144 Song, 2015, Application of Sherman–Morrison–Woodbury formulas in instantaneous dynamic of peripheral milling for thin-walled component, Int J Mech Sci, 96-97, 79, 10.1016/j.ijmecsci.2015.03.021 Yang, 2016, Chatter prediction for the peripheral milling of thin-walled workpieces with curved surfaces, Int J Mach Tools Manuf, 109, 36, 10.1016/j.ijmachtools.2016.07.002 Tuysuz, 2017, Time-domain modeling of varying dynamic characteristics in thin-wall machining using perturbation and reduced-order substructuring methods, J Manuf Sci Eng, 140, 10.1115/1.4038000 Altintas, 2012 Schmitz, 2009 Otto, 2017, Stability of milling with non-uniform pitch and variable helix tools, Int J Adv Manuf Technol, 89, 2613, 10.1007/s00170-016-9762-2 Niu, 2017, Mechanics and multi-regenerative stability of variable pitch and variable helix milling tools considering runout, Int J Mach Tools Manuf, 123, 129, 10.1016/j.ijmachtools.2017.08.006 Zhang, 2016, An efficient approach for milling dynamics modeling and analysis with varying time delay and cutter runout effect, Int J Adv Manuf Technol, 87, 3373, 10.1007/s00170-016-8671-8 Sun, 2018, Predictive modeling of chatter stability considering force-induced deformation effect in milling thin-walled parts, Int J Mach Tools Manuf, 135, 38, 10.1016/j.ijmachtools.2018.08.003 Insperger, 2011 Stepan, 2018, Ultimate capability of variable pitch milling cutters, CIRP Ann, 67, 373, 10.1016/j.cirp.2018.03.005 Zhan, 2020, Dynamics modeling and stability analysis of five-axis ball-end milling system with variable pitch tools, Int J Mech Sci, 182, 10.1016/j.ijmecsci.2020.105774 Niu, 2016, Stability analysis of milling processes with periodic spindle speed variation via the variable-step numerical integration method, J Manuf Sci Eng, 138, 10.1115/1.4033043 Faassen, 2007, An improved tool path model including periodic delay for chatter prediction in milling, J Comput Nonlinear Dyn, 2, 167, 10.1115/1.2447465 Long, 2004, Milling model with variable time delay, Proceedings of the ASME 2004 International Mechanical Engineering Congress and Exposition, 933 Insperger, 2005, State dependent regenerative delay in milling processes, 955 Bachrathy, 2011, State dependent regenerative effect in milling processes, J Comput Nonlinear Dyn, 6 Kondo, 1981, Behavior of self-excited chatter due to multiple regenerative effect, J Eng Ind, 103, 324, 10.1115/1.3184492 Dombovari, 2015, On the bistable zone of milling processes, J Manuf Sci Eng, 373 Altintaş, 1995, Analytical prediction of stability lobes in milling, CIRP Ann, 44, 357, 10.1016/S0007-8506(07)62342-7 Insperger, 2004, Updated semi-discretization method for periodic delay-differential equations with discrete delay, Int J Numer Methods Eng, 61, 117, 10.1002/nme.1061 Ding, 2010, A full-discretization method for prediction of milling stability, Int J Mach Tools Manuf, 50, 502, 10.1016/j.ijmachtools.2010.01.003 Campomanes, 2003, An improved time domain simulation for dynamic milling at small radial immersions, J Manuf Sci Eng, 125, 416, 10.1115/1.1580852 Schmitz, 2007, Runout effects in milling: surface finish, surface location error, and stability, Int J Mach Tools Manuf, 47, 841, 10.1016/j.ijmachtools.2006.06.014 Zhang, 2014, A synthetical stability method for cutting parameter optimization to assure surface location accuracy in flexible part milling, Int J Adv Manuf Technol, 75, 1131, 10.1007/s00170-014-6151-6 Kiss, 2016, Surface error and stability chart of beam-type workpiece in milling processes Schmitz, 2006, Closed-form solutions for surface location error in milling, Int J Mach Tools Manuf, 46, 1369, 10.1016/j.ijmachtools.2005.10.007 Bachrathy, 2009, Surface properties of the machined workpiece for helical mills, Mach Sci Technol, 13, 227, 10.1080/10910340903012167 Kiss, 2015, Explicit model of cumulative surface location error for milling processes Wang, 2020, Prediction of cumulative surface location error at the contact zone of in-process workpiece and milling tool, Int J Mech Sci, 177, 10.1016/j.ijmecsci.2020.105543 Eksioglu, 2012, Discrete-time prediction of chatter stability, cutting forces, and surface location errors in flexible milling systems, J Manuf Sci Eng, 134, 10.1115/1.4007622 Niu, 2020, Generation mechanism and quality of milling surface profile for variable pitch tools considering runout, J Manuf Sci Eng, 142, 10.1115/1.4047622 Dombovari, 2011, On the global dynamics of chatter in the orthogonal cuttingmodel, Int J Non Linear Mech, 46, 330, 10.1016/j.ijnonlinmec.2010.09.016 Balachandran, 2001, Nonlinear dynamics of milling processes, Philos Trans R Soc Lond Ser A, 359, 793, 10.1098/rsta.2000.0755 Wang, 1996, Chip load kinematics in milling with radial cutter runout, J Eng Ind, 118, 111, 10.1115/1.2803631 Liu, 2014, Multiple regenerative effects in cutting process and nonlinear oscillations, Int J Dyn Control, 2, 86, 10.1007/s40435-014-0078-5 Loan, 2000, The Ubiquitous Kronecker product, J Comput Appl Math, 123, 85, 10.1016/S0377-0427(00)00393-9 Honeycutt, 2016, A new metric for automated stability identification in time domain milling simulation, J Manuf Sci Eng, 138, 10.1115/1.4032586 Ewins, 2000 Niu, 2018, Patterns of regenerative milling chatter under joint influences of cutting parameters, tool geometries, and runout, J Manuf Sci Eng, 140, 10.1115/1.4041250 Schmitz, 1999, Examination of surface location error due to phasing of cutter vibrations, Precis Eng, 23, 51, 10.1016/S0141-6359(98)00025-7 Wiercigroch, 2001, Sources of nonlinearities, chatter generation and suppression in metal cutting, Philos Trans R Soc Lond Ser A, 359, 663, 10.1098/rsta.2000.0750 Garg, 2007, Stability of a time-delayed system with parametric excitation, J Dyn Syst Meas Control, 129, 125, 10.1115/1.2432357