Investigation on the influence of the cavitation boundaries on the dynamic behavior of planar mechanical systems with hydrodynamic bearings

Mechanism and Machine Theory - Tập 99 - Trang 19-36 - 2016
Gregory Bregion Daniel1, Tiago Henrique Machado1, Katia Lucchesi Cavalca1
1Laboratory of Rotating Machinery, Faculty of Mechanic Engineering, UNICAMP, 200, Rua Mendeleyev, PO Box 6122, Campinas, CEP 13083-970, SP, Brazil

Tài liệu tham khảo

Pinkus, 1961 Machado, 2012, The effect of the lubricated revolute joint parameters and hydrodynamic force models on the dynamic response of planar multibody systems, Nonlinear Dyn., 69, 635, 10.1007/s11071-011-0293-y Frêne, 1997, Hydrodynamic lubrication Flores, 2004, Dynamic analysis for planar multibody mechanical systems with lubricated joints, Multibody Sys. Dyn., 12, 47, 10.1023/B:MUBO.0000042901.74498.3a Flores, 2004, Modelling lubricated revolute joints in multibody mechanical systems, Proc. Inst. Mech. Eng. K J. Multi-body Dyn., 218, 183 Alshaer, 2005, Dynamics of a multibody mechanical system with lubricated long journal bearings, J. Mech. Des., 127, 493, 10.1115/1.1864112 Flores, 2006, A study on dynamics of mechanical systems including joints with clearance and lubrication, Mech. Mach. Theory, 41, 247, 10.1016/j.mechmachtheory.2005.10.002 Flores, 2009, Lubricated revolute joints in rigid multibody systems, Nonlinear Dyn., 56, 277, 10.1007/s11071-008-9399-2 Tian, 2010, Simulation of planar flexible multibody systems with clearance and lubricated revolute joints, Nonlinear Dyn., 60, 489, 10.1007/s11071-009-9610-0 Ravn, 2000, Joint clearances with lubricated long bearings in multibody mechanical systems, J. Mech. Des., 122, 484, 10.1115/1.1314867 Booker, 1965, Dynamically loaded journal bearings: mobility method of solution, Trans. ASME J. Basic Eng., 4, 537, 10.1115/1.3650602 Booker, 1971, Dynamically loaded journal bearings: numerical application of mobility method, Trans. ASME J. Lubr. Technol., 1, 168, 10.1115/1.3451507 Flores, 2006, Journal bearings subjected to dynamic loads: the analytical mobility method, Mec. Exp. Assoc. Port. Anál. Exp. Tensões, 13, 115 Choi, 1998, Tolerance optimization for mechanisms with lubricated joints, Multibody Sys. Dyn., 2, 145, 10.1023/A:1009785211763 Daniel, 2011, Analysis of the dynamics of a slider–crank mechanism with hydrodynamic lubrication in the connecting rod-slider joint clearance, Mech. Mach. Theory, 46, 1434, 10.1016/j.mechmachtheory.2011.05.007 Bannwart, 2010, Hydrodynamic bearings modeling with alternate motion, Mech. Res. Commun., 37, 590, 10.1016/j.mechrescom.2010.07.003 Wang, 2004, Lubrication analysis of a connecting-rod bearing in a high-speed engine. Part I: rod and bearing deformation, Tribol. Trans., 47, 280, 10.1080/05698190490439346 Wang, 2004, Lubrication analysis of a connecting-rod bearing in a high-speed engine. Part II: lubrication performance evaluation for non-circular bearings, Tribol. Trans., 47, 290, 10.1080/05698190490439436 Tian, 2013, ElastoHydroDynamic lubricated cylindrical joints for rigid-flexible multibody dynamics, Comput. Struct., 114–115, 106, 10.1016/j.compstruc.2012.10.019 Tian, 2015, Coupling dynamics of a geared multibody system supported by ElastoHydroDynamic lubricated cylindrical joints, Multibody Sys. Dyn., 33, 259, 10.1007/s11044-014-9420-0 Schwab, 2002, A comparison of revolute joint clearance model in the dynamic analysis of rigid and elastic mechanical systems, Mech. Mach. Theory, 37, 895, 10.1016/S0094-114X(02)00033-2 Erkaya, 2015, Effects of joint clearance on the dynamics of a partly compliant mechanism: numerical and experimental studies, Mech. Mach. Theory, 88, 125, 10.1016/j.mechmachtheory.2015.02.007 Flores, 2010, Spatial rigid-multi-body systems with lubricated spherical clearance joints: modeling and simulation, Nonlinear Dyn., 60, 99, 10.1007/s11071-009-9583-z Dubois, 1953, Analytical derivation and experimental evaluation of short bearing approximation for full journal bearings, NACA Rep., 1157 Capone, 1986, Orbital motions of rigid symmetric rotor supported on journal bearings, Mec. Ital., 199, 37 Shampine, 1975 Reis, 2014, Dynamic analysis of a lubricated planar slider–crank mechanism considering friction and Hertz contact effects, Mech. Mach. Theory, 74, 257, 10.1016/j.mechmachtheory.2013.11.009