VIBRATION TRANSMISSION THROUGH ROLLING ELEMENT BEARINGS, .2. SYSTEM STUDIES

被引:103
作者
LIM, TC [1 ]
SINGH, R [1 ]
机构
[1] OHIO STATE UNIV,DEPT MECH ENGN,COLUMBUS,OH 43210
关键词
D O I
10.1016/0022-460X(90)90883-2
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
This paper extends the proposed bearing stiffness formulation of Part I and demonstrates its superiority over existing models in vibration transmission analyses for a generic single shaft-bearing-plate-mount system. The bearing stiffness matrix [K]bm is incorporated in discrete system models involving lumped parameter and finite element modeling techniques. Shaft, plate and mount flexibilities are also included in such models. The stability issue associated with the proposed bearing model is addressed analytically by using Liapunov's stability method, and the system is found to be dynamically stable provided the preloads are sufficiently high. Eigensolution and forced harmonic response to the following rolling element bearing system example cases are obtained by using our formulation and results are compared with the predictions yielded by the current vibration models: (i) rigid shaft and plate system freely suspended; (ii) rigid shaft and plate supported on flexible mounts; (iii) an experimental set-up consisting of a flexible shaft, two ball bearings, a rectangular plate and the supporting structure. Analytical results indicate that our proposed model is indeed capable of predicting plate rigid-body angular motion or plate flexural motion as excited by shaft motion. Such predictions are not observed in existing vibration models. Also, models with lower degrees of freedom, developed by several previous investigators, tend to underestimate the resonant frequencies and force or moment transmissibilities as compared with our multi-degree-of-freedom models. Finally, comparisons between our model and experiment have been found to be reasonably good. © 1990.
引用
收藏
页码:201 / 225
页数:25
相关论文
共 24 条
[1]  
DESALVO GJ, 1983, ANSYS USERS MANUAL
[2]  
Dimarogonas A.D., 2013, ANAL METHODS ROTOR D
[3]  
Gargiulo E.P., 1980, MACH DES, V52, P107
[4]  
HOUSER DR, 1989, 7TH P INT MOD AN C L, P147
[5]  
INMAN DJ, 1989, VIBRATIO CONTROL MEA
[6]  
Ishida K., 1981, P INT S GEAR POW TRA, P13
[7]  
KAHRAMAN A, 1989, P INT POWER TRANSMIS, P375
[8]   INSITU DETERMINATION OF ROLLING BEARING STIFFNESS AND DAMPING BY MODAL-ANALYSIS [J].
KRAUS, J ;
BLECH, JJ ;
BRAUN, SG .
JOURNAL OF VIBRATION ACOUSTICS STRESS AND RELIABILITY IN DESIGN-TRANSACTIONS OF THE ASME, 1987, 109 (03) :235-240
[9]   VIBRATION TRANSMISSION THROUGH ROLLING ELEMENT BEARINGS, .1. BEARING STIFFNESS FORMULATION [J].
LIM, TC ;
SINGH, R .
JOURNAL OF SOUND AND VIBRATION, 1990, 139 (02) :179-199
[10]  
LIN JS, 1989, THESIS OHIO STATE U