Coupling Analysis of Dynamics and Oil Film Lubrication on Rotor - Floating Bush Bearing System
スポンサーリンク
概要
- 論文の詳細を見る
A coupling calculation method using dynamics and lubrication for a rotor and floating bush bearing system has been developed to predict self-excited oscillations and unbalance oscillations using a flexible multibody dynamics technique with hydrodynamic lubrication theory. Based on experimental results using a floating bush bearing, an accurate and numerically efficient lubrication model is proposed to calculate the hydrodynamic force, the bush rotating speed and the temperature of the oil film. In the multibody dynamics analysis, the rotor was modeled using the finite element method to include bending elasticity and the gyroscopic effect. The bearing bush was modeled by a rigid body. The coupling analysis between the rotordynamics and the oil film force of the bearing was performed by an in-house flexible multibody dynamics solver. Subsequently, the detailed mechanism of the rotor oscillation and the influence of some design parameters were investigated by numerical simulations and experiments.
著者
-
Suzuki Atsushi
Toyota Motor Corp.
-
Abekura Takanori
Toyota Central R&d Labs. Inc.
-
INAGAKI Mizuho
Toyota Central R&D Labs., Inc.
-
RÜBEL Jan
University of Heidelberg
-
KAWAMOTO Atsushi
Toyota Central R&D Labs., Inc.
-
STARKE Jens
Technical University of Denmark
-
SUZUKI Atsushi
Toyota Central R&D Labs., Inc.
関連論文
- Coupling Analysis of Dynamics and Oil Film Lubrication on Rotor - Floating Bush Bearing System
- SIM-08 DYNAMIC STRUCTURE OF BOUNDARY LUBRICATING WATER FILM ON HYDROPHILIC SURFACES USING MOLECULAR DYNAMICS SIMULATION(Simulations of Micro/Nano Scale Phenomena III,Technical Program of Oral Presentations)
- GSD-16 EVALUATION OF SURFACE TEMPERATURE AND FRICTION COEFFICIENT FOR SLIDING-ROLLING CONTACT TESTS(GEAR STRENGTH AND DURABILITY, INCLUDING GEAR MATERIALS AND HEAT TREATMENT TECHNIQUES)
- A Theoretical Investigation on the Dynamic Behavior of Molybdenum Dithiocarbamate Molecule in the Engine Oil Phase
- Dynamic Analysis of Needle Roller Bearings on Torque Loss